src/HOL/RealVector.thy
author wenzelm
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(*  Title:      HOL/RealVector.thy
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    Author:     Brian Huffman
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*)
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header {* Vector Spaces and Algebras over the Reals *}
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theory RealVector
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imports RComplete
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begin
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subsection {* Locale for additive functions *}
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locale additive =
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  fixes f :: "'a::ab_group_add \<Rightarrow> 'b::ab_group_add"
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  assumes add: "f (x + y) = f x + f y"
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begin
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lemma zero: "f 0 = 0"
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proof -
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  have "f 0 = f (0 + 0)" by simp
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  also have "\<dots> = f 0 + f 0" by (rule add)
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  finally show "f 0 = 0" by simp
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qed
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lemma minus: "f (- x) = - f x"
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proof -
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  have "f (- x) + f x = f (- x + x)" by (rule add [symmetric])
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  also have "\<dots> = - f x + f x" by (simp add: zero)
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  finally show "f (- x) = - f x" by (rule add_right_imp_eq)
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qed
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lemma diff: "f (x - y) = f x - f y"
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by (simp add: add minus diff_minus)
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lemma setsum: "f (setsum g A) = (\<Sum>x\<in>A. f (g x))"
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apply (cases "finite A")
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apply (induct set: finite)
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apply (simp add: zero)
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apply (simp add: add)
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apply (simp add: zero)
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done
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end
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subsection {* Vector spaces *}
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locale vector_space =
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  fixes scale :: "'a::field \<Rightarrow> 'b::ab_group_add \<Rightarrow> 'b"
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  assumes scale_right_distrib [algebra_simps]:
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    "scale a (x + y) = scale a x + scale a y"
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  and scale_left_distrib [algebra_simps]:
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    "scale (a + b) x = scale a x + scale b x"
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  and scale_scale [simp]: "scale a (scale b x) = scale (a * b) x"
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  and scale_one [simp]: "scale 1 x = x"
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begin
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lemma scale_left_commute:
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  "scale a (scale b x) = scale b (scale a x)"
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by (simp add: mult_commute)
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lemma scale_zero_left [simp]: "scale 0 x = 0"
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  and scale_minus_left [simp]: "scale (- a) x = - (scale a x)"
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  and scale_left_diff_distrib [algebra_simps]:
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        "scale (a - b) x = scale a x - scale b x"
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proof -
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  interpret s: additive "\<lambda>a. scale a x"
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    proof qed (rule scale_left_distrib)
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  show "scale 0 x = 0" by (rule s.zero)
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  show "scale (- a) x = - (scale a x)" by (rule s.minus)
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  show "scale (a - b) x = scale a x - scale b x" by (rule s.diff)
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qed
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lemma scale_zero_right [simp]: "scale a 0 = 0"
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  and scale_minus_right [simp]: "scale a (- x) = - (scale a x)"
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  and scale_right_diff_distrib [algebra_simps]:
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        "scale a (x - y) = scale a x - scale a y"
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proof -
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  interpret s: additive "\<lambda>x. scale a x"
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    proof qed (rule scale_right_distrib)
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  show "scale a 0 = 0" by (rule s.zero)
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  show "scale a (- x) = - (scale a x)" by (rule s.minus)
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  show "scale a (x - y) = scale a x - scale a y" by (rule s.diff)
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qed
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lemma scale_eq_0_iff [simp]:
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  "scale a x = 0 \<longleftrightarrow> a = 0 \<or> x = 0"
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proof cases
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  assume "a = 0" thus ?thesis by simp
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next
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  assume anz [simp]: "a \<noteq> 0"
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  { assume "scale a x = 0"
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    hence "scale (inverse a) (scale a x) = 0" by simp
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    hence "x = 0" by simp }
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  thus ?thesis by force
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qed
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lemma scale_left_imp_eq:
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  "\<lbrakk>a \<noteq> 0; scale a x = scale a y\<rbrakk> \<Longrightarrow> x = y"
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proof -
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  assume nonzero: "a \<noteq> 0"
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  assume "scale a x = scale a y"
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  hence "scale a (x - y) = 0"
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     by (simp add: scale_right_diff_distrib)
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  hence "x - y = 0" by (simp add: nonzero)
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  thus "x = y" by (simp only: right_minus_eq)
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qed
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lemma scale_right_imp_eq:
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  "\<lbrakk>x \<noteq> 0; scale a x = scale b x\<rbrakk> \<Longrightarrow> a = b"
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proof -
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  assume nonzero: "x \<noteq> 0"
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  assume "scale a x = scale b x"
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  hence "scale (a - b) x = 0"
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     by (simp add: scale_left_diff_distrib)
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  hence "a - b = 0" by (simp add: nonzero)
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  thus "a = b" by (simp only: right_minus_eq)
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qed
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lemma scale_cancel_left [simp]:
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  "scale a x = scale a y \<longleftrightarrow> x = y \<or> a = 0"
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by (auto intro: scale_left_imp_eq)
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lemma scale_cancel_right [simp]:
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  "scale a x = scale b x \<longleftrightarrow> a = b \<or> x = 0"
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by (auto intro: scale_right_imp_eq)
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end
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subsection {* Real vector spaces *}
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class scaleR =
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  fixes scaleR :: "real \<Rightarrow> 'a \<Rightarrow> 'a" (infixr "*\<^sub>R" 75)
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begin
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abbreviation
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  divideR :: "'a \<Rightarrow> real \<Rightarrow> 'a" (infixl "'/\<^sub>R" 70)
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where
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  "x /\<^sub>R r == scaleR (inverse r) x"
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end
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class real_vector = scaleR + ab_group_add +
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  assumes scaleR_right_distrib: "scaleR a (x + y) = scaleR a x + scaleR a y"
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  and scaleR_left_distrib: "scaleR (a + b) x = scaleR a x + scaleR b x"
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  and scaleR_scaleR: "scaleR a (scaleR b x) = scaleR (a * b) x"
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  and scaleR_one: "scaleR 1 x = x"
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interpretation real_vector:
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  vector_space "scaleR :: real \<Rightarrow> 'a \<Rightarrow> 'a::real_vector"
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apply unfold_locales
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apply (rule scaleR_right_distrib)
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apply (rule scaleR_left_distrib)
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apply (rule scaleR_scaleR)
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apply (rule scaleR_one)
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done
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text {* Recover original theorem names *}
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lemmas scaleR_left_commute = real_vector.scale_left_commute
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lemmas scaleR_zero_left = real_vector.scale_zero_left
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lemmas scaleR_minus_left = real_vector.scale_minus_left
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lemmas scaleR_left_diff_distrib = real_vector.scale_left_diff_distrib
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lemmas scaleR_zero_right = real_vector.scale_zero_right
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lemmas scaleR_minus_right = real_vector.scale_minus_right
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lemmas scaleR_right_diff_distrib = real_vector.scale_right_diff_distrib
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lemmas scaleR_eq_0_iff = real_vector.scale_eq_0_iff
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lemmas scaleR_left_imp_eq = real_vector.scale_left_imp_eq
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lemmas scaleR_right_imp_eq = real_vector.scale_right_imp_eq
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lemmas scaleR_cancel_left = real_vector.scale_cancel_left
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lemmas scaleR_cancel_right = real_vector.scale_cancel_right
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lemma scaleR_minus1_left [simp]:
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  fixes x :: "'a::real_vector"
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  shows "scaleR (-1) x = - x"
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  using scaleR_minus_left [of 1 x] by simp
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class real_algebra = real_vector + ring +
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  assumes mult_scaleR_left [simp]: "scaleR a x * y = scaleR a (x * y)"
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  and mult_scaleR_right [simp]: "x * scaleR a y = scaleR a (x * y)"
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class real_algebra_1 = real_algebra + ring_1
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class real_div_algebra = real_algebra_1 + division_ring
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class real_field = real_div_algebra + field
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instantiation real :: real_field
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begin
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definition
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  real_scaleR_def [simp]: "scaleR a x = a * x"
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instance proof
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qed (simp_all add: algebra_simps)
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end
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interpretation scaleR_left: additive "(\<lambda>a. scaleR a x::'a::real_vector)"
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proof qed (rule scaleR_left_distrib)
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interpretation scaleR_right: additive "(\<lambda>x. scaleR a x::'a::real_vector)"
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proof qed (rule scaleR_right_distrib)
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lemma nonzero_inverse_scaleR_distrib:
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  fixes x :: "'a::real_div_algebra" shows
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  "\<lbrakk>a \<noteq> 0; x \<noteq> 0\<rbrakk> \<Longrightarrow> inverse (scaleR a x) = scaleR (inverse a) (inverse x)"
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by (rule inverse_unique, simp)
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lemma inverse_scaleR_distrib:
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  fixes x :: "'a::{real_div_algebra, division_ring_inverse_zero}"
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  shows "inverse (scaleR a x) = scaleR (inverse a) (inverse x)"
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apply (case_tac "a = 0", simp)
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apply (case_tac "x = 0", simp)
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apply (erule (1) nonzero_inverse_scaleR_distrib)
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done
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subsection {* Embedding of the Reals into any @{text real_algebra_1}:
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@{term of_real} *}
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definition
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  of_real :: "real \<Rightarrow> 'a::real_algebra_1" where
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  "of_real r = scaleR r 1"
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lemma scaleR_conv_of_real: "scaleR r x = of_real r * x"
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by (simp add: of_real_def)
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lemma of_real_0 [simp]: "of_real 0 = 0"
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by (simp add: of_real_def)
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c433e78d4203 define new constant of_real for class real_algebra_1;
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lemma of_real_1 [simp]: "of_real 1 = 1"
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by (simp add: of_real_def)
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lemma of_real_add [simp]: "of_real (x + y) = of_real x + of_real y"
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by (simp add: of_real_def scaleR_left_distrib)
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c433e78d4203 define new constant of_real for class real_algebra_1;
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lemma of_real_minus [simp]: "of_real (- x) = - of_real x"
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by (simp add: of_real_def)
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lemma of_real_diff [simp]: "of_real (x - y) = of_real x - of_real y"
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by (simp add: of_real_def scaleR_left_diff_distrib)
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lemma of_real_mult [simp]: "of_real (x * y) = of_real x * of_real y"
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by (simp add: of_real_def mult_commute)
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lemma nonzero_of_real_inverse:
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  "x \<noteq> 0 \<Longrightarrow> of_real (inverse x) =
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   inverse (of_real x :: 'a::real_div_algebra)"
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by (simp add: of_real_def nonzero_inverse_scaleR_distrib)
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lemma of_real_inverse [simp]:
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  "of_real (inverse x) =
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   inverse (of_real x :: 'a::{real_div_algebra, division_ring_inverse_zero})"
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by (simp add: of_real_def inverse_scaleR_distrib)
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lemma nonzero_of_real_divide:
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  "y \<noteq> 0 \<Longrightarrow> of_real (x / y) =
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   (of_real x / of_real y :: 'a::real_field)"
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by (simp add: divide_inverse nonzero_of_real_inverse)
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lemma of_real_divide [simp]:
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  "of_real (x / y) =
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   (of_real x / of_real y :: 'a::{real_field, field_inverse_zero})"
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by (simp add: divide_inverse)
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lemma of_real_power [simp]:
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  "of_real (x ^ n) = (of_real x :: 'a::{real_algebra_1}) ^ n"
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by (induct n) simp_all
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lemma of_real_eq_iff [simp]: "(of_real x = of_real y) = (x = y)"
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by (simp add: of_real_def)
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lemma inj_of_real:
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  "inj of_real"
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  by (auto intro: injI)
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lemmas of_real_eq_0_iff [simp] = of_real_eq_iff [of _ 0, simplified]
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   278
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   279
lemma of_real_eq_id [simp]: "of_real = (id :: real \<Rightarrow> real)"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   280
proof
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   281
  fix r
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   282
  show "of_real r = id r"
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   283
    by (simp add: of_real_def)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   284
qed
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   285
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   286
text{*Collapse nested embeddings*}
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   287
lemma of_real_of_nat_eq [simp]: "of_real (of_nat n) = of_nat n"
20772
7a51ed817ec7 tuned definitions/proofs;
wenzelm
parents: 20763
diff changeset
   288
by (induct n) auto
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   289
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   290
lemma of_real_of_int_eq [simp]: "of_real (of_int z) = of_int z"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   291
by (cases z rule: int_diff_cases, simp)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   292
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   293
lemma of_real_number_of_eq:
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   294
  "of_real (number_of w) = (number_of w :: 'a::{number_ring,real_algebra_1})"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   295
by (simp add: number_of_eq)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   296
22912
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   297
text{*Every real algebra has characteristic zero*}
38621
d6cb7e625d75 more concise characterization of of_nat operation and class semiring_char_0
haftmann
parents: 37887
diff changeset
   298
22912
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   299
instance real_algebra_1 < ring_char_0
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   300
proof
38621
d6cb7e625d75 more concise characterization of of_nat operation and class semiring_char_0
haftmann
parents: 37887
diff changeset
   301
  from inj_of_real inj_of_nat have "inj (of_real \<circ> of_nat)" by (rule inj_comp)
d6cb7e625d75 more concise characterization of of_nat operation and class semiring_char_0
haftmann
parents: 37887
diff changeset
   302
  then show "inj (of_nat :: nat \<Rightarrow> 'a)" by (simp add: comp_def)
22912
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   303
qed
c477862c566d instance real_algebra_1 < ring_char_0
huffman
parents: 22898
diff changeset
   304
27553
d315a513a150 instance real_field < field_char_0;
huffman
parents: 27552
diff changeset
   305
instance real_field < field_char_0 ..
d315a513a150 instance real_field < field_char_0;
huffman
parents: 27552
diff changeset
   306
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   307
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   308
subsection {* The Set of Real Numbers *}
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   309
37767
a2b7a20d6ea3 dropped superfluous [code del]s
haftmann
parents: 36839
diff changeset
   310
definition Reals :: "'a::real_algebra_1 set" where
a2b7a20d6ea3 dropped superfluous [code del]s
haftmann
parents: 36839
diff changeset
   311
  "Reals = range of_real"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   312
21210
c17fd2df4e9e renamed 'const_syntax' to 'notation';
wenzelm
parents: 20828
diff changeset
   313
notation (xsymbols)
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   314
  Reals  ("\<real>")
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   315
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   316
lemma Reals_of_real [simp]: "of_real r \<in> Reals"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   317
by (simp add: Reals_def)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   318
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   319
lemma Reals_of_int [simp]: "of_int z \<in> Reals"
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   320
by (subst of_real_of_int_eq [symmetric], rule Reals_of_real)
20718
4c4869e4ddb7 add lemmas of_int_in_Reals, of_nat_in_Reals
huffman
parents: 20694
diff changeset
   321
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   322
lemma Reals_of_nat [simp]: "of_nat n \<in> Reals"
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   323
by (subst of_real_of_nat_eq [symmetric], rule Reals_of_real)
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   324
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   325
lemma Reals_number_of [simp]:
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   326
  "(number_of w::'a::{number_ring,real_algebra_1}) \<in> Reals"
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   327
by (subst of_real_number_of_eq [symmetric], rule Reals_of_real)
20718
4c4869e4ddb7 add lemmas of_int_in_Reals, of_nat_in_Reals
huffman
parents: 20694
diff changeset
   328
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   329
lemma Reals_0 [simp]: "0 \<in> Reals"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   330
apply (unfold Reals_def)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   331
apply (rule range_eqI)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   332
apply (rule of_real_0 [symmetric])
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   333
done
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   334
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   335
lemma Reals_1 [simp]: "1 \<in> Reals"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   336
apply (unfold Reals_def)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   337
apply (rule range_eqI)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   338
apply (rule of_real_1 [symmetric])
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   339
done
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   340
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   341
lemma Reals_add [simp]: "\<lbrakk>a \<in> Reals; b \<in> Reals\<rbrakk> \<Longrightarrow> a + b \<in> Reals"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   342
apply (auto simp add: Reals_def)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   343
apply (rule range_eqI)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   344
apply (rule of_real_add [symmetric])
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   345
done
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   346
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   347
lemma Reals_minus [simp]: "a \<in> Reals \<Longrightarrow> - a \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   348
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   349
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   350
apply (rule of_real_minus [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   351
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   352
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   353
lemma Reals_diff [simp]: "\<lbrakk>a \<in> Reals; b \<in> Reals\<rbrakk> \<Longrightarrow> a - b \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   354
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   355
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   356
apply (rule of_real_diff [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   357
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   358
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   359
lemma Reals_mult [simp]: "\<lbrakk>a \<in> Reals; b \<in> Reals\<rbrakk> \<Longrightarrow> a * b \<in> Reals"
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   360
apply (auto simp add: Reals_def)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   361
apply (rule range_eqI)
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   362
apply (rule of_real_mult [symmetric])
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   363
done
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   364
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   365
lemma nonzero_Reals_inverse:
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   366
  fixes a :: "'a::real_div_algebra"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   367
  shows "\<lbrakk>a \<in> Reals; a \<noteq> 0\<rbrakk> \<Longrightarrow> inverse a \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   368
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   369
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   370
apply (erule nonzero_of_real_inverse [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   371
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   372
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   373
lemma Reals_inverse [simp]:
36409
d323e7773aa8 use new classes (linordered_)field_inverse_zero
haftmann
parents: 36349
diff changeset
   374
  fixes a :: "'a::{real_div_algebra, division_ring_inverse_zero}"
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   375
  shows "a \<in> Reals \<Longrightarrow> inverse a \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   376
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   377
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   378
apply (rule of_real_inverse [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   379
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   380
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   381
lemma nonzero_Reals_divide:
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   382
  fixes a b :: "'a::real_field"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   383
  shows "\<lbrakk>a \<in> Reals; b \<in> Reals; b \<noteq> 0\<rbrakk> \<Longrightarrow> a / b \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   384
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   385
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   386
apply (erule nonzero_of_real_divide [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   387
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   388
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   389
lemma Reals_divide [simp]:
36409
d323e7773aa8 use new classes (linordered_)field_inverse_zero
haftmann
parents: 36349
diff changeset
   390
  fixes a b :: "'a::{real_field, field_inverse_zero}"
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   391
  shows "\<lbrakk>a \<in> Reals; b \<in> Reals\<rbrakk> \<Longrightarrow> a / b \<in> Reals"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   392
apply (auto simp add: Reals_def)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   393
apply (rule range_eqI)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   394
apply (rule of_real_divide [symmetric])
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   395
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   396
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   397
lemma Reals_power [simp]:
31017
2c227493ea56 stripped class recpower further
haftmann
parents: 30729
diff changeset
   398
  fixes a :: "'a::{real_algebra_1}"
20722
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   399
  shows "a \<in> Reals \<Longrightarrow> a ^ n \<in> Reals"
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   400
apply (auto simp add: Reals_def)
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   401
apply (rule range_eqI)
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   402
apply (rule of_real_power [symmetric])
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   403
done
741737aa70b2 add lemmas about of_real and power
huffman
parents: 20718
diff changeset
   404
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   405
lemma Reals_cases [cases set: Reals]:
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   406
  assumes "q \<in> \<real>"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   407
  obtains (of_real) r where "q = of_real r"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   408
  unfolding Reals_def
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   409
proof -
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   410
  from `q \<in> \<real>` have "q \<in> range of_real" unfolding Reals_def .
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   411
  then obtain r where "q = of_real r" ..
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   412
  then show thesis ..
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   413
qed
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   414
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   415
lemma Reals_induct [case_names of_real, induct set: Reals]:
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   416
  "q \<in> \<real> \<Longrightarrow> (\<And>r. P (of_real r)) \<Longrightarrow> P q"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   417
  by (rule Reals_cases) auto
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   418
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   419
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   420
subsection {* Topological spaces *}
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   421
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   422
class "open" =
31494
1ba61c7b129f fix type of open
huffman
parents: 31492
diff changeset
   423
  fixes "open" :: "'a set \<Rightarrow> bool"
31490
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   424
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   425
class topological_space = "open" +
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   426
  assumes open_UNIV [simp, intro]: "open UNIV"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   427
  assumes open_Int [intro]: "open S \<Longrightarrow> open T \<Longrightarrow> open (S \<inter> T)"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   428
  assumes open_Union [intro]: "\<forall>S\<in>K. open S \<Longrightarrow> open (\<Union> K)"
31490
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   429
begin
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   430
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   431
definition
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   432
  closed :: "'a set \<Rightarrow> bool" where
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   433
  "closed S \<longleftrightarrow> open (- S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   434
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   435
lemma open_empty [intro, simp]: "open {}"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   436
  using open_Union [of "{}"] by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   437
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   438
lemma open_Un [intro]: "open S \<Longrightarrow> open T \<Longrightarrow> open (S \<union> T)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   439
  using open_Union [of "{S, T}"] by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   440
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   441
lemma open_UN [intro]: "\<forall>x\<in>A. open (B x) \<Longrightarrow> open (\<Union>x\<in>A. B x)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   442
  unfolding UN_eq by (rule open_Union) auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   443
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   444
lemma open_INT [intro]: "finite A \<Longrightarrow> \<forall>x\<in>A. open (B x) \<Longrightarrow> open (\<Inter>x\<in>A. B x)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   445
  by (induct set: finite) auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   446
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   447
lemma open_Inter [intro]: "finite S \<Longrightarrow> \<forall>T\<in>S. open T \<Longrightarrow> open (\<Inter>S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   448
  unfolding Inter_def by (rule open_INT)
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   449
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   450
lemma closed_empty [intro, simp]:  "closed {}"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   451
  unfolding closed_def by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   452
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   453
lemma closed_Un [intro]: "closed S \<Longrightarrow> closed T \<Longrightarrow> closed (S \<union> T)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   454
  unfolding closed_def by auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   455
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   456
lemma closed_Inter [intro]: "\<forall>S\<in>K. closed S \<Longrightarrow> closed (\<Inter> K)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   457
  unfolding closed_def Inter_def by auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   458
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   459
lemma closed_UNIV [intro, simp]: "closed UNIV"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   460
  unfolding closed_def by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   461
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   462
lemma closed_Int [intro]: "closed S \<Longrightarrow> closed T \<Longrightarrow> closed (S \<inter> T)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   463
  unfolding closed_def by auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   464
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   465
lemma closed_INT [intro]: "\<forall>x\<in>A. closed (B x) \<Longrightarrow> closed (\<Inter>x\<in>A. B x)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   466
  unfolding closed_def by auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   467
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   468
lemma closed_UN [intro]: "finite A \<Longrightarrow> \<forall>x\<in>A. closed (B x) \<Longrightarrow> closed (\<Union>x\<in>A. B x)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   469
  by (induct set: finite) auto
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   470
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   471
lemma closed_Union [intro]: "finite S \<Longrightarrow> \<forall>T\<in>S. closed T \<Longrightarrow> closed (\<Union>S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   472
  unfolding Union_def by (rule closed_UN)
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   473
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   474
lemma open_closed: "open S \<longleftrightarrow> closed (- S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   475
  unfolding closed_def by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   476
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   477
lemma closed_open: "closed S \<longleftrightarrow> open (- S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   478
  unfolding closed_def by simp
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   479
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   480
lemma open_Diff [intro]: "open S \<Longrightarrow> closed T \<Longrightarrow> open (S - T)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   481
  unfolding closed_open Diff_eq by (rule open_Int)
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   482
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   483
lemma closed_Diff [intro]: "closed S \<Longrightarrow> open T \<Longrightarrow> closed (S - T)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   484
  unfolding open_closed Diff_eq by (rule closed_Int)
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   485
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   486
lemma open_Compl [intro]: "closed S \<Longrightarrow> open (- S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   487
  unfolding closed_open .
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   488
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   489
lemma closed_Compl [intro]: "open S \<Longrightarrow> closed (- S)"
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   490
  unfolding open_closed .
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   491
c350f3ad6b0d move definitions of open, closed to RealVector.thy
huffman
parents: 31446
diff changeset
   492
end
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   493
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   494
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   495
subsection {* Metric spaces *}
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   496
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   497
class dist =
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   498
  fixes dist :: "'a \<Rightarrow> 'a \<Rightarrow> real"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   499
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   500
class open_dist = "open" + dist +
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   501
  assumes open_dist: "open S \<longleftrightarrow> (\<forall>x\<in>S. \<exists>e>0. \<forall>y. dist y x < e \<longrightarrow> y \<in> S)"
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   502
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   503
class metric_space = open_dist +
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   504
  assumes dist_eq_0_iff [simp]: "dist x y = 0 \<longleftrightarrow> x = y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   505
  assumes dist_triangle2: "dist x y \<le> dist x z + dist y z"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   506
begin
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   507
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   508
lemma dist_self [simp]: "dist x x = 0"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   509
by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   510
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   511
lemma zero_le_dist [simp]: "0 \<le> dist x y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   512
using dist_triangle2 [of x x y] by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   513
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   514
lemma zero_less_dist_iff: "0 < dist x y \<longleftrightarrow> x \<noteq> y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   515
by (simp add: less_le)
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   516
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   517
lemma dist_not_less_zero [simp]: "\<not> dist x y < 0"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   518
by (simp add: not_less)
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   519
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   520
lemma dist_le_zero_iff [simp]: "dist x y \<le> 0 \<longleftrightarrow> x = y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   521
by (simp add: le_less)
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   522
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   523
lemma dist_commute: "dist x y = dist y x"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   524
proof (rule order_antisym)
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   525
  show "dist x y \<le> dist y x"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   526
    using dist_triangle2 [of x y x] by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   527
  show "dist y x \<le> dist x y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   528
    using dist_triangle2 [of y x y] by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   529
qed
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   530
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   531
lemma dist_triangle: "dist x z \<le> dist x y + dist y z"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   532
using dist_triangle2 [of x z y] by (simp add: dist_commute)
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   533
31565
da5a5589418e theorem attribute [tendsto_intros]
huffman
parents: 31564
diff changeset
   534
lemma dist_triangle3: "dist x y \<le> dist a x + dist a y"
da5a5589418e theorem attribute [tendsto_intros]
huffman
parents: 31564
diff changeset
   535
using dist_triangle2 [of x y a] by (simp add: dist_commute)
da5a5589418e theorem attribute [tendsto_intros]
huffman
parents: 31564
diff changeset
   536
41969
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   537
lemma dist_triangle_alt:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   538
  shows "dist y z <= dist x y + dist x z"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   539
by (rule dist_triangle3)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   540
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   541
lemma dist_pos_lt:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   542
  shows "x \<noteq> y ==> 0 < dist x y"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   543
by (simp add: zero_less_dist_iff)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   544
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   545
lemma dist_nz:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   546
  shows "x \<noteq> y \<longleftrightarrow> 0 < dist x y"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   547
by (simp add: zero_less_dist_iff)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   548
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   549
lemma dist_triangle_le:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   550
  shows "dist x z + dist y z <= e \<Longrightarrow> dist x y <= e"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   551
by (rule order_trans [OF dist_triangle2])
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   552
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   553
lemma dist_triangle_lt:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   554
  shows "dist x z + dist y z < e ==> dist x y < e"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   555
by (rule le_less_trans [OF dist_triangle2])
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   556
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   557
lemma dist_triangle_half_l:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   558
  shows "dist x1 y < e / 2 \<Longrightarrow> dist x2 y < e / 2 \<Longrightarrow> dist x1 x2 < e"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   559
by (rule dist_triangle_lt [where z=y], simp)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   560
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   561
lemma dist_triangle_half_r:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   562
  shows "dist y x1 < e / 2 \<Longrightarrow> dist y x2 < e / 2 \<Longrightarrow> dist x1 x2 < e"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   563
by (rule dist_triangle_half_l, simp_all add: dist_commute)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   564
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   565
subclass topological_space
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   566
proof
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   567
  have "\<exists>e::real. 0 < e"
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   568
    by (fast intro: zero_less_one)
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   569
  then show "open UNIV"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   570
    unfolding open_dist by simp
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   571
next
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   572
  fix S T assume "open S" "open T"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   573
  then show "open (S \<inter> T)"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   574
    unfolding open_dist
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   575
    apply clarify
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   576
    apply (drule (1) bspec)+
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   577
    apply (clarify, rename_tac r s)
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   578
    apply (rule_tac x="min r s" in exI, simp)
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   579
    done
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   580
next
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   581
  fix K assume "\<forall>S\<in>K. open S" thus "open (\<Union>K)"
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   582
    unfolding open_dist by fast
31413
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   583
qed
729d90a531e4 introduce class topological_space as a superclass of metric_space
huffman
parents: 31289
diff changeset
   584
41969
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   585
lemma (in metric_space) open_ball: "open {y. dist x y < d}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   586
proof (unfold open_dist, intro ballI)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   587
  fix y assume *: "y \<in> {y. dist x y < d}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   588
  then show "\<exists>e>0. \<forall>z. dist z y < e \<longrightarrow> z \<in> {y. dist x y < d}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   589
    by (auto intro!: exI[of _ "d - dist x y"] simp: field_simps dist_triangle_lt)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   590
qed
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
   591
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   592
end
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   593
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   594
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   595
subsection {* Real normed vector spaces *}
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   596
29608
564ea783ace8 no base sort in class import
haftmann
parents: 29252
diff changeset
   597
class norm =
22636
c40465deaf20 new class syntax for scaleR and norm classes
huffman
parents: 22625
diff changeset
   598
  fixes norm :: "'a \<Rightarrow> real"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   599
24520
40b220403257 fix sgn_div_norm class
huffman
parents: 24513
diff changeset
   600
class sgn_div_norm = scaleR + norm + sgn +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   601
  assumes sgn_div_norm: "sgn x = x /\<^sub>R norm x"
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   602
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   603
class dist_norm = dist + norm + minus +
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   604
  assumes dist_norm: "dist x y = norm (x - y)"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   605
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   606
class real_normed_vector = real_vector + sgn_div_norm + dist_norm + open_dist +
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   607
  assumes norm_ge_zero [simp]: "0 \<le> norm x"
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   608
  and norm_eq_zero [simp]: "norm x = 0 \<longleftrightarrow> x = 0"
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   609
  and norm_triangle_ineq: "norm (x + y) \<le> norm x + norm y"
31586
d4707b99e631 declare norm_scaleR [simp]; declare scaleR_cancel lemmas [simp]
huffman
parents: 31567
diff changeset
   610
  and norm_scaleR [simp]: "norm (scaleR a x) = \<bar>a\<bar> * norm x"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   611
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   612
class real_normed_algebra = real_algebra + real_normed_vector +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   613
  assumes norm_mult_ineq: "norm (x * y) \<le> norm x * norm y"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   614
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   615
class real_normed_algebra_1 = real_algebra_1 + real_normed_algebra +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   616
  assumes norm_one [simp]: "norm 1 = 1"
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   617
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   618
class real_normed_div_algebra = real_div_algebra + real_normed_vector +
25062
af5ef0d4d655 global class syntax
haftmann
parents: 24901
diff changeset
   619
  assumes norm_mult: "norm (x * y) = norm x * norm y"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   620
24588
ed9a1254d674 introduced classes
haftmann
parents: 24520
diff changeset
   621
class real_normed_field = real_field + real_normed_div_algebra
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   622
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   623
instance real_normed_div_algebra < real_normed_algebra_1
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   624
proof
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   625
  fix x y :: 'a
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   626
  show "norm (x * y) \<le> norm x * norm y"
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   627
    by (simp add: norm_mult)
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   628
next
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   629
  have "norm (1 * 1::'a) = norm (1::'a) * norm (1::'a)"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   630
    by (rule norm_mult)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   631
  thus "norm (1::'a) = 1" by simp
20554
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   632
qed
c433e78d4203 define new constant of_real for class real_algebra_1;
huffman
parents: 20551
diff changeset
   633
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   634
lemma norm_zero [simp]: "norm (0::'a::real_normed_vector) = 0"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   635
by simp
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   636
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   637
lemma zero_less_norm_iff [simp]:
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   638
  fixes x :: "'a::real_normed_vector"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   639
  shows "(0 < norm x) = (x \<noteq> 0)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   640
by (simp add: order_less_le)
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   641
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   642
lemma norm_not_less_zero [simp]:
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   643
  fixes x :: "'a::real_normed_vector"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   644
  shows "\<not> norm x < 0"
20828
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   645
by (simp add: linorder_not_less)
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   646
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   647
lemma norm_le_zero_iff [simp]:
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   648
  fixes x :: "'a::real_normed_vector"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   649
  shows "(norm x \<le> 0) = (x = 0)"
20828
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   650
by (simp add: order_le_less)
68ed2e514ca0 add lemmas norm_not_less_zero, norm_le_zero_iff
huffman
parents: 20772
diff changeset
   651
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   652
lemma norm_minus_cancel [simp]:
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   653
  fixes x :: "'a::real_normed_vector"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   654
  shows "norm (- x) = norm x"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   655
proof -
21809
4b93e949ac33 remove uses of scaleR infix syntax; add lemma Reals_number_of
huffman
parents: 21404
diff changeset
   656
  have "norm (- x) = norm (scaleR (- 1) x)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   657
    by (simp only: scaleR_minus_left scaleR_one)
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   658
  also have "\<dots> = \<bar>- 1\<bar> * norm x"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   659
    by (rule norm_scaleR)
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   660
  finally show ?thesis by simp
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   661
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   662
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   663
lemma norm_minus_commute:
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   664
  fixes a b :: "'a::real_normed_vector"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   665
  shows "norm (a - b) = norm (b - a)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   666
proof -
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   667
  have "norm (- (b - a)) = norm (b - a)"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   668
    by (rule norm_minus_cancel)
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   669
  thus ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   670
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   671
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   672
lemma norm_triangle_ineq2:
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   673
  fixes a b :: "'a::real_normed_vector"
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   674
  shows "norm a - norm b \<le> norm (a - b)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   675
proof -
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   676
  have "norm (a - b + b) \<le> norm (a - b) + norm b"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   677
    by (rule norm_triangle_ineq)
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   678
  thus ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   679
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   680
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   681
lemma norm_triangle_ineq3:
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   682
  fixes a b :: "'a::real_normed_vector"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   683
  shows "\<bar>norm a - norm b\<bar> \<le> norm (a - b)"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   684
apply (subst abs_le_iff)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   685
apply auto
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   686
apply (rule norm_triangle_ineq2)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   687
apply (subst norm_minus_commute)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   688
apply (rule norm_triangle_ineq2)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   689
done
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   690
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   691
lemma norm_triangle_ineq4:
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   692
  fixes a b :: "'a::real_normed_vector"
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   693
  shows "norm (a - b) \<le> norm a + norm b"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   694
proof -
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   695
  have "norm (a + - b) \<le> norm a + norm (- b)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   696
    by (rule norm_triangle_ineq)
22898
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   697
  thus ?thesis
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   698
    by (simp only: diff_minus norm_minus_cancel)
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   699
qed
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   700
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   701
lemma norm_diff_ineq:
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   702
  fixes a b :: "'a::real_normed_vector"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   703
  shows "norm a - norm b \<le> norm (a + b)"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   704
proof -
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   705
  have "norm a - norm (- b) \<le> norm (a - - b)"
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   706
    by (rule norm_triangle_ineq2)
38ae2815989f add lemma norm_diff_ineq; shorten other proofs
huffman
parents: 22880
diff changeset
   707
  thus ?thesis by simp
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   708
qed
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   709
20551
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   710
lemma norm_diff_triangle_ineq:
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   711
  fixes a b c d :: "'a::real_normed_vector"
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   712
  shows "norm ((a + b) - (c + d)) \<le> norm (a - c) + norm (b - d)"
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   713
proof -
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   714
  have "norm ((a + b) - (c + d)) = norm ((a - c) + (b - d))"
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   715
    by (simp add: diff_minus add_ac)
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   716
  also have "\<dots> \<le> norm (a - c) + norm (b - d)"
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   717
    by (rule norm_triangle_ineq)
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   718
  finally show ?thesis .
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   719
qed
ba543692bfa1 add theorem norm_diff_triangle_ineq
huffman
parents: 20533
diff changeset
   720
22857
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   721
lemma abs_norm_cancel [simp]:
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   722
  fixes a :: "'a::real_normed_vector"
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   723
  shows "\<bar>norm a\<bar> = norm a"
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   724
by (rule abs_of_nonneg [OF norm_ge_zero])
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   725
22880
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   726
lemma norm_add_less:
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   727
  fixes x y :: "'a::real_normed_vector"
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   728
  shows "\<lbrakk>norm x < r; norm y < s\<rbrakk> \<Longrightarrow> norm (x + y) < r + s"
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   729
by (rule order_le_less_trans [OF norm_triangle_ineq add_strict_mono])
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   730
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   731
lemma norm_mult_less:
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   732
  fixes x y :: "'a::real_normed_algebra"
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   733
  shows "\<lbrakk>norm x < r; norm y < s\<rbrakk> \<Longrightarrow> norm (x * y) < r * s"
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   734
apply (rule order_le_less_trans [OF norm_mult_ineq])
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   735
apply (simp add: mult_strict_mono')
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   736
done
424d6fb67513 add lemmas norm_add_less, norm_mult_less
huffman
parents: 22876
diff changeset
   737
22857
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   738
lemma norm_of_real [simp]:
cb84e886cc90 add lemma abs_norm_cancel
huffman
parents: 22852
diff changeset
   739
  "norm (of_real r :: 'a::real_normed_algebra_1) = \<bar>r\<bar>"
31586
d4707b99e631 declare norm_scaleR [simp]; declare scaleR_cancel lemmas [simp]
huffman
parents: 31567
diff changeset
   740
unfolding of_real_def by simp
20560
49996715bc6e norm_one is now proved from other class axioms
huffman
parents: 20554
diff changeset
   741
22876
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   742
lemma norm_number_of [simp]:
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   743
  "norm (number_of w::'a::{number_ring,real_normed_algebra_1})
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   744
    = \<bar>number_of w\<bar>"
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   745
by (subst of_real_number_of_eq [symmetric], rule norm_of_real)
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   746
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   747
lemma norm_of_int [simp]:
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   748
  "norm (of_int z::'a::real_normed_algebra_1) = \<bar>of_int z\<bar>"
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   749
by (subst of_real_of_int_eq [symmetric], rule norm_of_real)
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   750
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   751
lemma norm_of_nat [simp]:
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   752
  "norm (of_nat n::'a::real_normed_algebra_1) = of_nat n"
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   753
apply (subst of_real_of_nat_eq [symmetric])
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   754
apply (subst norm_of_real, simp)
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   755
done
2b4c831ceca7 add lemmas norm_number_of, norm_of_int, norm_of_nat
huffman
parents: 22857
diff changeset
   756
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   757
lemma nonzero_norm_inverse:
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   758
  fixes a :: "'a::real_normed_div_algebra"
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   759
  shows "a \<noteq> 0 \<Longrightarrow> norm (inverse a) = inverse (norm a)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   760
apply (rule inverse_unique [symmetric])
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   761
apply (simp add: norm_mult [symmetric])
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   762
done
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   763
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   764
lemma norm_inverse:
36409
d323e7773aa8 use new classes (linordered_)field_inverse_zero
haftmann
parents: 36349
diff changeset
   765
  fixes a :: "'a::{real_normed_div_algebra, division_ring_inverse_zero}"
20533
49442b3024bb remove conflicting norm syntax
huffman
parents: 20504
diff changeset
   766
  shows "norm (inverse a) = inverse (norm a)"
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   767
apply (case_tac "a = 0", simp)
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   768
apply (erule nonzero_norm_inverse)
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   769
done
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
   770
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   771
lemma nonzero_norm_divide:
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   772
  fixes a b :: "'a::real_normed_field"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   773
  shows "b \<noteq> 0 \<Longrightarrow> norm (a / b) = norm a / norm b"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   774
by (simp add: divide_inverse norm_mult nonzero_norm_inverse)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   775
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   776
lemma norm_divide:
36409
d323e7773aa8 use new classes (linordered_)field_inverse_zero
haftmann
parents: 36349
diff changeset
   777
  fixes a b :: "'a::{real_normed_field, field_inverse_zero}"
20584
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   778
  shows "norm (a / b) = norm a / norm b"
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   779
by (simp add: divide_inverse norm_mult norm_inverse)
60b1d52a455d added classes real_div_algebra and real_field; added lemmas
huffman
parents: 20560
diff changeset
   780
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   781
lemma norm_power_ineq:
31017
2c227493ea56 stripped class recpower further
haftmann
parents: 30729
diff changeset
   782
  fixes x :: "'a::{real_normed_algebra_1}"
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   783
  shows "norm (x ^ n) \<le> norm x ^ n"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   784
proof (induct n)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   785
  case 0 show "norm (x ^ 0) \<le> norm x ^ 0" by simp
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   786
next
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   787
  case (Suc n)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   788
  have "norm (x * x ^ n) \<le> norm x * norm (x ^ n)"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   789
    by (rule norm_mult_ineq)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   790
  also from Suc have "\<dots> \<le> norm x * norm x ^ n"
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   791
    using norm_ge_zero by (rule mult_left_mono)
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   792
  finally show "norm (x ^ Suc n) \<le> norm x ^ Suc n"
30273
ecd6f0ca62ea declare power_Suc [simp]; remove redundant type-specific versions of power_Suc
huffman
parents: 30242
diff changeset
   793
    by simp
22852
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   794
qed
2490d4b4671a clean up RealVector classes
huffman
parents: 22636
diff changeset
   795
20684
74e8b46abb97 add lemma norm_power
huffman
parents: 20584
diff changeset
   796
lemma norm_power:
31017
2c227493ea56 stripped class recpower further
haftmann
parents: 30729
diff changeset
   797
  fixes x :: "'a::{real_normed_div_algebra}"
20684
74e8b46abb97 add lemma norm_power
huffman
parents: 20584
diff changeset
   798
  shows "norm (x ^ n) = norm x ^ n"
30273
ecd6f0ca62ea declare power_Suc [simp]; remove redundant type-specific versions of power_Suc
huffman
parents: 30242
diff changeset
   799
by (induct n) (simp_all add: norm_mult)
20684
74e8b46abb97 add lemma norm_power
huffman
parents: 20584
diff changeset
   800
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   801
text {* Every normed vector space is a metric space. *}
31285
0a3f9ee4117c generalize dist function to class real_normed_vector
huffman
parents: 31017
diff changeset
   802
31289
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   803
instance real_normed_vector < metric_space
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   804
proof
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   805
  fix x y :: 'a show "dist x y = 0 \<longleftrightarrow> x = y"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   806
    unfolding dist_norm by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   807
next
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   808
  fix x y z :: 'a show "dist x y \<le> dist x z + dist y z"
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   809
    unfolding dist_norm
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   810
    using norm_triangle_ineq4 [of "x - z" "y - z"] by simp
847f00f435d4 move dist operation to new metric_space class
huffman
parents: 31285
diff changeset
   811
qed
31285
0a3f9ee4117c generalize dist function to class real_normed_vector
huffman
parents: 31017
diff changeset
   812
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   813
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   814
subsection {* Class instances for real numbers *}
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   815
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   816
instantiation real :: real_normed_field
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   817
begin
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   818
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   819
definition real_norm_def [simp]:
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   820
  "norm r = \<bar>r\<bar>"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   821
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   822
definition dist_real_def:
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   823
  "dist x y = \<bar>x - y\<bar>"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   824
37767
a2b7a20d6ea3 dropped superfluous [code del]s
haftmann
parents: 36839
diff changeset
   825
definition open_real_def:
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   826
  "open (S :: real set) \<longleftrightarrow> (\<forall>x\<in>S. \<exists>e>0. \<forall>y. dist y x < e \<longrightarrow> y \<in> S)"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   827
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   828
instance
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   829
apply (intro_classes, unfold real_norm_def real_scaleR_def)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   830
apply (rule dist_real_def)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   831
apply (rule open_real_def)
36795
e05e1283c550 new construction of real numbers using Cauchy sequences
huffman
parents: 36409
diff changeset
   832
apply (simp add: sgn_real_def)
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   833
apply (rule abs_ge_zero)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   834
apply (rule abs_eq_0)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   835
apply (rule abs_triangle_ineq)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   836
apply (rule abs_mult)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   837
apply (rule abs_mult)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   838
done
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   839
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   840
end
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   841
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   842
lemma open_real_lessThan [simp]:
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   843
  fixes a :: real shows "open {..<a}"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   844
unfolding open_real_def dist_real_def
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   845
proof (clarify)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   846
  fix x assume "x < a"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   847
  hence "0 < a - x \<and> (\<forall>y. \<bar>y - x\<bar> < a - x \<longrightarrow> y \<in> {..<a})" by auto
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   848
  thus "\<exists>e>0. \<forall>y. \<bar>y - x\<bar> < e \<longrightarrow> y \<in> {..<a}" ..
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   849
qed
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   850
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   851
lemma open_real_greaterThan [simp]:
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   852
  fixes a :: real shows "open {a<..}"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   853
unfolding open_real_def dist_real_def
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   854
proof (clarify)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   855
  fix x assume "a < x"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   856
  hence "0 < x - a \<and> (\<forall>y. \<bar>y - x\<bar> < x - a \<longrightarrow> y \<in> {a<..})" by auto
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   857
  thus "\<exists>e>0. \<forall>y. \<bar>y - x\<bar> < e \<longrightarrow> y \<in> {a<..}" ..
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   858
qed
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   859
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   860
lemma open_real_greaterThanLessThan [simp]:
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   861
  fixes a b :: real shows "open {a<..<b}"
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   862
proof -
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   863
  have "{a<..<b} = {a<..} \<inter> {..<b}" by auto
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   864
  thus "open {a<..<b}" by (simp add: open_Int)
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   865
qed
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   866
31567
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   867
lemma closed_real_atMost [simp]: 
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   868
  fixes a :: real shows "closed {..a}"
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   869
unfolding closed_open by simp
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   870
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   871
lemma closed_real_atLeast [simp]:
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   872
  fixes a :: real shows "closed {a..}"
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   873
unfolding closed_open by simp
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   874
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   875
lemma closed_real_atLeastAtMost [simp]:
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   876
  fixes a b :: real shows "closed {a..b}"
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   877
proof -
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   878
  have "{a..b} = {a..} \<inter> {..b}" by auto
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   879
  thus "closed {a..b}" by (simp add: closed_Int)
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   880
qed
0fb78b3a9145 new lemmas
huffman
parents: 31565
diff changeset
   881
31564
d2abf6f6f619 subsection for real instances; new lemmas for open sets of reals
huffman
parents: 31494
diff changeset
   882
31446
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   883
subsection {* Extra type constraints *}
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   884
31492
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   885
text {* Only allow @{term "open"} in class @{text topological_space}. *}
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   886
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   887
setup {* Sign.add_const_constraint
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   888
  (@{const_name "open"}, SOME @{typ "'a::topological_space set \<Rightarrow> bool"}) *}
5400beeddb55 replace 'topo' with 'open'; add extra type constraint for 'open'
huffman
parents: 31490
diff changeset
   889
31446
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   890
text {* Only allow @{term dist} in class @{text metric_space}. *}
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   891
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   892
setup {* Sign.add_const_constraint
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   893
  (@{const_name dist}, SOME @{typ "'a::metric_space \<Rightarrow> 'a \<Rightarrow> real"}) *}
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   894
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   895
text {* Only allow @{term norm} in class @{text real_normed_vector}. *}
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   896
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   897
setup {* Sign.add_const_constraint
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   898
  (@{const_name norm}, SOME @{typ "'a::real_normed_vector \<Rightarrow> real"}) *}
2d91b2416de8 add extra type constraints for dist, norm
huffman
parents: 31419
diff changeset
   899
31285
0a3f9ee4117c generalize dist function to class real_normed_vector
huffman
parents: 31017
diff changeset
   900
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   901
subsection {* Sign function *}
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   902
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   903
lemma norm_sgn:
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   904
  "norm (sgn(x::'a::real_normed_vector)) = (if x = 0 then 0 else 1)"
31586
d4707b99e631 declare norm_scaleR [simp]; declare scaleR_cancel lemmas [simp]
huffman
parents: 31567
diff changeset
   905
by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   906
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   907
lemma sgn_zero [simp]: "sgn(0::'a::real_normed_vector) = 0"
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   908
by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   909
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   910
lemma sgn_zero_iff: "(sgn(x::'a::real_normed_vector) = 0) = (x = 0)"
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   911
by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   912
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   913
lemma sgn_minus: "sgn (- x) = - sgn(x::'a::real_normed_vector)"
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   914
by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   915
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   916
lemma sgn_scaleR:
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   917
  "sgn (scaleR r x) = scaleR (sgn r) (sgn(x::'a::real_normed_vector))"
31586
d4707b99e631 declare norm_scaleR [simp]; declare scaleR_cancel lemmas [simp]
huffman
parents: 31567
diff changeset
   918
by (simp add: sgn_div_norm mult_ac)
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   919
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   920
lemma sgn_one [simp]: "sgn (1::'a::real_normed_algebra_1) = 1"
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   921
by (simp add: sgn_div_norm)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   922
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   923
lemma sgn_of_real:
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   924
  "sgn (of_real r::'a::real_normed_algebra_1) = of_real (sgn r)"
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   925
unfolding of_real_def by (simp only: sgn_scaleR sgn_one)
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   926
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   927
lemma sgn_mult:
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   928
  fixes x y :: "'a::real_normed_div_algebra"
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   929
  shows "sgn (x * y) = sgn x * sgn y"
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   930
by (simp add: sgn_div_norm norm_mult mult_commute)
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
   931
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   932
lemma real_sgn_eq: "sgn (x::real) = x / \<bar>x\<bar>"
24506
020db6ec334a final(?) iteration of sgn saga.
nipkow
parents: 23282
diff changeset
   933
by (simp add: sgn_div_norm divide_inverse)
22972
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   934
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   935
lemma real_sgn_pos: "0 < (x::real) \<Longrightarrow> sgn x = 1"
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   936
unfolding real_sgn_eq by simp
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   937
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   938
lemma real_sgn_neg: "(x::real) < 0 \<Longrightarrow> sgn x = -1"
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   939
unfolding real_sgn_eq by simp
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   940
3e96b98d37c6 generalized sgn function to work on any real normed vector space
huffman
parents: 22942
diff changeset
   941
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   942
subsection {* Bounded Linear and Bilinear Operators *}
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   943
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   944
locale bounded_linear = additive +
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   945
  constrains f :: "'a::real_normed_vector \<Rightarrow> 'b::real_normed_vector"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   946
  assumes scaleR: "f (scaleR r x) = scaleR r (f x)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   947
  assumes bounded: "\<exists>K. \<forall>x. norm (f x) \<le> norm x * K"
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   948
begin
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   949
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   950
lemma pos_bounded:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   951
  "\<exists>K>0. \<forall>x. norm (f x) \<le> norm x * K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   952
proof -
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   953
  obtain K where K: "\<And>x. norm (f x) \<le> norm x * K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   954
    using bounded by fast
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   955
  show ?thesis
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   956
  proof (intro exI impI conjI allI)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   957
    show "0 < max 1 K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   958
      by (rule order_less_le_trans [OF zero_less_one le_maxI1])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   959
  next
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   960
    fix x
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   961
    have "norm (f x) \<le> norm x * K" using K .
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   962
    also have "\<dots> \<le> norm x * max 1 K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   963
      by (rule mult_left_mono [OF le_maxI2 norm_ge_zero])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   964
    finally show "norm (f x) \<le> norm x * max 1 K" .
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   965
  qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   966
qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   967
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   968
lemma nonneg_bounded:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   969
  "\<exists>K\<ge>0. \<forall>x. norm (f x) \<le> norm x * K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   970
proof -
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   971
  from pos_bounded
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   972
  show ?thesis by (auto intro: order_less_imp_le)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   973
qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   974
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   975
end
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   976
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   977
locale bounded_bilinear =
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   978
  fixes prod :: "['a::real_normed_vector, 'b::real_normed_vector]
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   979
                 \<Rightarrow> 'c::real_normed_vector"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   980
    (infixl "**" 70)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   981
  assumes add_left: "prod (a + a') b = prod a b + prod a' b"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   982
  assumes add_right: "prod a (b + b') = prod a b + prod a b'"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   983
  assumes scaleR_left: "prod (scaleR r a) b = scaleR r (prod a b)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   984
  assumes scaleR_right: "prod a (scaleR r b) = scaleR r (prod a b)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   985
  assumes bounded: "\<exists>K. \<forall>a b. norm (prod a b) \<le> norm a * norm b * K"
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   986
begin
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   987
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   988
lemma pos_bounded:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   989
  "\<exists>K>0. \<forall>a b. norm (a ** b) \<le> norm a * norm b * K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   990
apply (cut_tac bounded, erule exE)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   991
apply (rule_tac x="max 1 K" in exI, safe)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   992
apply (rule order_less_le_trans [OF zero_less_one le_maxI1])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   993
apply (drule spec, drule spec, erule order_trans)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   994
apply (rule mult_left_mono [OF le_maxI2])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   995
apply (intro mult_nonneg_nonneg norm_ge_zero)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   996
done
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   997
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
   998
lemma nonneg_bounded:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
   999
  "\<exists>K\<ge>0. \<forall>a b. norm (a ** b) \<le> norm a * norm b * K"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1000
proof -
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1001
  from pos_bounded
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1002
  show ?thesis by (auto intro: order_less_imp_le)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1003
qed
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1004
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1005
lemma additive_right: "additive (\<lambda>b. prod a b)"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1006
by (rule additive.intro, rule add_right)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1007
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1008
lemma additive_left: "additive (\<lambda>a. prod a b)"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1009
by (rule additive.intro, rule add_left)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1010
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1011
lemma zero_left: "prod 0 b = 0"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1012
by (rule additive.zero [OF additive_left])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1013
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1014
lemma zero_right: "prod a 0 = 0"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1015
by (rule additive.zero [OF additive_right])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1016
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1017
lemma minus_left: "prod (- a) b = - prod a b"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1018
by (rule additive.minus [OF additive_left])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1019
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1020
lemma minus_right: "prod a (- b) = - prod a b"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1021
by (rule additive.minus [OF additive_right])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1022
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1023
lemma diff_left:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1024
  "prod (a - a') b = prod a b - prod a' b"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1025
by (rule additive.diff [OF additive_left])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1026
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1027
lemma diff_right:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1028
  "prod a (b - b') = prod a b - prod a b'"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1029
by (rule additive.diff [OF additive_right])
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1030
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1031
lemma bounded_linear_left:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1032
  "bounded_linear (\<lambda>a. a ** b)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1033
apply (unfold_locales)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1034
apply (rule add_left)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1035
apply (rule scaleR_left)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1036
apply (cut_tac bounded, safe)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1037
apply (rule_tac x="norm b * K" in exI)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1038
apply (simp add: mult_ac)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1039
done
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1040
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1041
lemma bounded_linear_right:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1042
  "bounded_linear (\<lambda>b. a ** b)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1043
apply (unfold_locales)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1044
apply (rule add_right)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1045
apply (rule scaleR_right)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1046
apply (cut_tac bounded, safe)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1047
apply (rule_tac x="norm a * K" in exI)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1048
apply (simp add: mult_ac)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1049
done
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1050
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1051
lemma prod_diff_prod:
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1052
  "(x ** y - a ** b) = (x - a) ** (y - b) + (x - a) ** b + a ** (y - b)"
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1053
by (simp add: diff_left diff_right)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1054
27443
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1055
end
22b6281d6719 use begin and end for proofs in locales
huffman
parents: 27435
diff changeset
  1056
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1057
interpretation mult:
29229
6f6262027054 Porting to new locales.
ballarin
parents: 28952
diff changeset
  1058
  bounded_bilinear "op * :: 'a \<Rightarrow> 'a \<Rightarrow> 'a::real_normed_algebra"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1059
apply (rule bounded_bilinear.intro)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1060
apply (rule left_distrib)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1061
apply (rule right_distrib)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1062
apply (rule mult_scaleR_left)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1063
apply (rule mult_scaleR_right)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1064
apply (rule_tac x="1" in exI)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1065
apply (simp add: norm_mult_ineq)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1066
done
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1067
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1068
interpretation mult_left:
29229
6f6262027054 Porting to new locales.
ballarin
parents: 28952
diff changeset
  1069
  bounded_linear "(\<lambda>x::'a::real_normed_algebra. x * y)"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1070
by (rule mult.bounded_linear_left)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1071
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1072
interpretation mult_right:
29229
6f6262027054 Porting to new locales.
ballarin
parents: 28952
diff changeset
  1073
  bounded_linear "(\<lambda>y::'a::real_normed_algebra. x * y)"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1074
by (rule mult.bounded_linear_right)
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1075
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1076
interpretation divide:
29229
6f6262027054 Porting to new locales.
ballarin
parents: 28952
diff changeset
  1077
  bounded_linear "(\<lambda>x::'a::real_normed_field. x / y)"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1078
unfolding divide_inverse by (rule mult.bounded_linear_left)
23120
a34f204e9c88 interpretation bounded_linear_divide
huffman
parents: 23113
diff changeset
  1079
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1080
interpretation scaleR: bounded_bilinear "scaleR"
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1081
apply (rule bounded_bilinear.intro)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1082
apply (rule scaleR_left_distrib)
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1083
apply (rule scaleR_right_distrib)
22973
64d300e16370 add lemma sgn_mult; declare real_scaleR_def and scaleR_eq_0_iff as simp rules
huffman
parents: 22972
diff changeset
  1084
apply simp
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1085
apply (rule scaleR_left_commute)
31586
d4707b99e631 declare norm_scaleR [simp]; declare scaleR_cancel lemmas [simp]
huffman
parents: 31567
diff changeset
  1086
apply (rule_tac x="1" in exI, simp)
22442
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1087
done
15d9ed9b5051 move bounded (bi)linear operator locales from Lim.thy to RealVector.thy
huffman
parents: 21809
diff changeset
  1088
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1089
interpretation scaleR_left: bounded_linear "\<lambda>r. scaleR r x"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1090
by (rule scaleR.bounded_linear_left)
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1091
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1092
interpretation scaleR_right: bounded_linear "\<lambda>x. scaleR r x"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1093
by (rule scaleR.bounded_linear_right)
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1094
30729
461ee3e49ad3 interpretation/interpret: prefixes are mandatory by default;
wenzelm
parents: 30273
diff changeset
  1095
interpretation of_real: bounded_linear "\<lambda>r. of_real r"
23127
56ee8105c002 simplify names of locale interpretations
huffman
parents: 23120
diff changeset
  1096
unfolding of_real_def by (rule scaleR.bounded_linear_left)
22625
a2967023d674 interpretation bounded_linear_of_real
huffman
parents: 22442
diff changeset
  1097
41969
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1098
subsection{* Hausdorff and other separation properties *}
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1099
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1100
class t0_space = topological_space +
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1101
  assumes t0_space: "x \<noteq> y \<Longrightarrow> \<exists>U. open U \<and> \<not> (x \<in> U \<longleftrightarrow> y \<in> U)"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1102
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1103
class t1_space = topological_space +
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1104
  assumes t1_space: "x \<noteq> y \<Longrightarrow> \<exists>U. open U \<and> x \<in> U \<and> y \<notin> U"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1105
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1106
instance t1_space \<subseteq> t0_space
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1107
proof qed (fast dest: t1_space)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1108
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1109
lemma separation_t1:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1110
  fixes x y :: "'a::t1_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1111
  shows "x \<noteq> y \<longleftrightarrow> (\<exists>U. open U \<and> x \<in> U \<and> y \<notin> U)"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1112
  using t1_space[of x y] by blast
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1113
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1114
lemma closed_singleton:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1115
  fixes a :: "'a::t1_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1116
  shows "closed {a}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1117
proof -
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1118
  let ?T = "\<Union>{S. open S \<and> a \<notin> S}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1119
  have "open ?T" by (simp add: open_Union)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1120
  also have "?T = - {a}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1121
    by (simp add: set_eq_iff separation_t1, auto)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1122
  finally show "closed {a}" unfolding closed_def .
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1123
qed
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1124
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1125
lemma closed_insert [simp]:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1126
  fixes a :: "'a::t1_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1127
  assumes "closed S" shows "closed (insert a S)"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1128
proof -
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1129
  from closed_singleton assms
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1130
  have "closed ({a} \<union> S)" by (rule closed_Un)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1131
  thus "closed (insert a S)" by simp
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1132
qed
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1133
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1134
lemma finite_imp_closed:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1135
  fixes S :: "'a::t1_space set"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1136
  shows "finite S \<Longrightarrow> closed S"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1137
by (induct set: finite, simp_all)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1138
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1139
text {* T2 spaces are also known as Hausdorff spaces. *}
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1140
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1141
class t2_space = topological_space +
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1142
  assumes hausdorff: "x \<noteq> y \<Longrightarrow> \<exists>U V. open U \<and> open V \<and> x \<in> U \<and> y \<in> V \<and> U \<inter> V = {}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1143
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1144
instance t2_space \<subseteq> t1_space
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1145
proof qed (fast dest: hausdorff)
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1146
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1147
instance metric_space \<subseteq> t2_space
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1148
proof
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1149
  fix x y :: "'a::metric_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1150
  assume xy: "x \<noteq> y"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1151
  let ?U = "{y'. dist x y' < dist x y / 2}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1152
  let ?V = "{x'. dist y x' < dist x y / 2}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1153
  have th0: "\<And>d x y z. (d x z :: real) \<le> d x y + d y z \<Longrightarrow> d y z = d z y
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1154
               \<Longrightarrow> \<not>(d x y * 2 < d x z \<and> d z y * 2 < d x z)" by arith
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1155
  have "open ?U \<and> open ?V \<and> x \<in> ?U \<and> y \<in> ?V \<and> ?U \<inter> ?V = {}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1156
    using dist_pos_lt[OF xy] th0[of dist, OF dist_triangle dist_commute]
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1157
    using open_ball[of _ "dist x y / 2"] by auto
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1158
  then show "\<exists>U V. open U \<and> open V \<and> x \<in> U \<and> y \<in> V \<and> U \<inter> V = {}"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1159
    by blast
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1160
qed
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1161
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1162
lemma separation_t2:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1163
  fixes x y :: "'a::t2_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1164
  shows "x \<noteq> y \<longleftrightarrow> (\<exists>U V. open U \<and> open V \<and> x \<in> U \<and> y \<in> V \<and> U \<inter> V = {})"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1165
  using hausdorff[of x y] by blast
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1166
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1167
lemma separation_t0:
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1168
  fixes x y :: "'a::t0_space"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1169
  shows "x \<noteq> y \<longleftrightarrow> (\<exists>U. open U \<and> ~(x\<in>U \<longleftrightarrow> y\<in>U))"
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1170
  using t0_space[of x y] by blast
1cf3e4107a2a moved t2_spaces to HOL image
hoelzl
parents: 38621
diff changeset
  1171
20504
6342e872e71d formalization of vector spaces and algebras over the real numbers
huffman
parents:
diff changeset
  1172
end