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(IMP_derivatives_alt_TCC1 0
(IMP_derivatives_alt_TCC1-1 nil 3471618864
("" (lemma "connected_domain")
(("" (lemma not_one_element)
(("" (lemma "connected_deriv_domain[T]") (("" (assert) nil nil))
nil))
nil))
nil)
((not_one_element formula-decl nil derivative_props nil)
(connected_deriv_domain formula-decl nil deriv_domain_def nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil)
(connected_domain formula-decl nil derivative_props nil))
nil))
(IMP_derivatives_alt_TCC2 0
(IMP_derivatives_alt_TCC2-1 nil 3471618864
("" (lemma not_one_element)
(("" (expand "not_one_element?") (("" (propax) nil nil)) nil)) nil)
((not_one_element formula-decl nil derivative_props nil)) nil))
(deriv_domain 0
(deriv_domain-1 nil 3472398507
("" (lemma "connected_deriv_domain[T]")
(("" (lemma connected_domain)
(("" (lemma not_one_element) (("" (assert) nil nil)) nil)) nil))
nil)
((connected_domain formula-decl nil derivative_props nil)
(not_one_element formula-decl nil derivative_props nil)
(connected_deriv_domain formula-decl nil deriv_domain_def nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil))
shostak))
(deriv_maximum 0
(deriv_maximum-1 nil 3297598424
("" (skosimp*)
(("" (auto-rewrite "deriv_TCC[T]")
(("" (expand "deriv")
(("" (expand "derivable?")
(("" (assert)
(("" (rewrite "lim_fun_def[(A[T](c!1))]")
(("" (expand "convergent?")
(("" (skolem!)
(("" (case "l!1 <= 0 AND 0 <= l!1")
(("1" (ground) nil nil)
("2" (delete 2)
(("2" (expand "convergence")
(("2" (split)
(("1"
(name "E"
"{ x : real| 0 < x AND x < b!1 - c!1}")
(("1" (case "adh[(A[T](c!1))](E)(0)")
(("1"
(assert)
(("1"
(use
"convergence_upper_bound[(A[T](c!1))]"
("f" "NQ(f!1, c!1)" "E" "E"))
(("1"
(ground)
(("1"
(use
"subset_convergence2[(A[T](c!1))]"
("E1" "E" "E2" "fullset[real]"))
(("1"
(assert)
(("1"
(rewrite "subset_fullset")
nil
nil))
nil))
nil)
("2"
(replace -2 + rl)
(("2"
(delete -1 -2 -3 -4 -5 2)
(("2"
(grind :if-match nil)
(("2"
(inst? -4)
(("2"
(assert)
(("2"
(rewrite
"div_mult_pos_le1")
nil
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2"
(replace -1 + rl)
(("2"
(delete -1 -2 -4 -5 2)
(("2"
(grind
:exclude
"abs"
:if-match
nil)
(("2"
(inst
1
"min(e!1/2, (b!1-c!1)/2)")
(("1" (grind) nil nil)
("2"
(grind)
(("1"
(lemma "connected_domain")
(("1"
(expand "connected?")
(("1"
(inst - "c!1" "b!1" "_")
(("1"
(inst?)
(("1"
(assert)
nil
nil))
nil))
nil))
nil))
nil)
("2"
(lemma "connected_domain")
(("2"
(expand "connected?")
(("2"
(inst - "c!1" "b!1" "_")
(("2"
(inst?)
(("2"
(assert)
nil
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2"
(name "E"
"{ x : real | a!1 - c!1 < x AND x < 0}")
(("2" (case "adh[(A[T](c!1))](E)(0)")
(("1"
(assert)
(("1"
(use
"convergence_lower_bound[(A[T](c!1))]"
("f" "NQ(f!1, c!1)" "E" "E"))
(("1"
(ground)
(("1"
(use
"subset_convergence2[(A[T](c!1))]"
("E1" "E" "E2" "fullset[real]"))
(("1"
(assert)
(("1"
(rewrite "subset_fullset")
nil
nil))
nil))
nil)
("2"
(replace -2 + rl)
(("2"
(delete -1 -2 -3 -4 -5 2)
(("2"
(grind :if-match nil)
(("2"
(inst? -4)
(("2"
(assert)
(("2"
(rewrite
"div_mult_neg_le2")
nil
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2"
(replace -1 + rl)
(("2"
(delete -1 -3 -4 -5 2)
(("2"
(grind
:exclude
"abs"
:if-match
nil)
(("2"
(inst
1
"max(-e!1/2, (a!1 - c!1)/2)")
(("1" (grind) nil nil)
("2"
(grind)
(("1"
(lemma "connected_domain")
(("1"
(expand "connected?")
(("1"
(inst - "a!1" "c!1" "_")
(("1"
(inst?)
(("1"
(assert)
nil
nil))
nil))
nil))
nil))
nil)
("2"
(lemma "connected_domain")
(("2"
(expand "connected?")
(("2"
(inst - "a!1" "c!1" "_")
(("2"
(inst?)
(("2"
(assert)
nil
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
((derivable? const-decl "bool" derivatives_def nil)
(lim_fun_def formula-decl nil lim_of_functions nil)
(NQ const-decl "real" derivatives_def nil)
(convergent? const-decl "bool" lim_of_functions nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(/= const-decl "boolean" notequal nil)
(nzreal nonempty-type-eq-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil)
(bool nonempty-type-eq-decl nil booleans nil)
(setof type-eq-decl nil defined_types nil)
(A const-decl "setof[nzreal]" derivatives_def nil)
(adh const-decl "setof[real]" convergence_functions nil)
(convergence_upper_bound formula-decl nil convergence_functions
nil)
(NOT const-decl "[bool -> bool]" booleans nil)
(real_plus_real_is_real application-judgement "real" reals nil)
(real_div_nzreal_is_real application-judgement "real" reals nil)
(div_mult_pos_le1 formula-decl nil real_props nil)
(>= const-decl "bool" reals nil)
(nonneg_real nonempty-type-eq-decl nil real_types nil)
(> const-decl "bool" reals nil)
(posreal nonempty-type-eq-decl nil real_types nil)
(real_ge_is_total_order name-judgement "(total_order?[real])"
real_props nil)
(real_gt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil)
(real_times_real_is_real application-judgement "real" reals nil)
(+ const-decl "[numfield, numfield -> numfield]" number_fields nil)
(fullset const-decl "set" sets nil) (set type-eq-decl nil sets nil)
(subset_convergence2 formula-decl nil convergence_functions nil)
(subset_fullset formula-decl nil sets_lemmas nil)
(subset_is_partial_order name-judgement "(partial_order?[set[T]])"
sets_lemmas nil)
(posreal_div_posreal_is_posreal application-judgement "posreal"
real_types nil)
(min const-decl "{p: real | p <= m AND p <= n}" real_defs nil)
(nznum nonempty-type-eq-decl nil number_fields nil)
(/ const-decl "[numfield, nznum -> numfield]" number_fields nil)
(e!1 skolem-const-decl "posreal" derivative_props nil)
(b!1 skolem-const-decl "T" derivative_props nil)
(c!1 skolem-const-decl "T" derivative_props nil)
(abs const-decl "{n: nonneg_real | n >= m AND n >= -m}" real_defs
nil)
(connected_domain formula-decl nil derivative_props nil)
(connected? const-decl "bool" deriv_domain_def nil)
(- const-decl "[numfield, numfield -> numfield]" number_fields nil)
(numfield nonempty-type-eq-decl nil number_fields nil)
(< const-decl "bool" reals nil)
(= const-decl "[T, T -> boolean]" equalities nil)
(real_minus_real_is_real application-judgement "real" reals nil)
(convergence_lower_bound formula-decl nil convergence_functions
nil)
(div_mult_neg_le2 formula-decl nil real_props nil)
(nonpos_real nonempty-type-eq-decl nil real_types nil)
(negreal nonempty-type-eq-decl nil real_types nil)
(nzreal_div_nzreal_is_nzreal application-judgement "nzreal"
real_types nil)
(minus_nzreal_is_nzreal application-judgement "nzreal" real_types
nil)
(max const-decl "{p: real | p >= m AND p >= n}" real_defs nil)
(- const-decl "[numfield -> numfield]" number_fields nil)
(e!1 skolem-const-decl "posreal" derivative_props nil)
(a!1 skolem-const-decl "T" derivative_props nil)
(minus_real_is_real application-judgement "real" reals nil)
(convergence const-decl "bool" lim_of_functions nil)
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil)
(<= const-decl "bool" reals nil)
(AND const-decl "[bool, bool -> bool]" booleans nil)
(real_lt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil)
(deriv const-decl "real" derivatives_def nil))
nil))
(deriv_minimum 0
(deriv_minimum-1 nil 3297598424
("" (skosimp)
(("" (use "deriv_maximum" ("f" "-f!1"))
(("" (auto-rewrite "neg_derivable[T]" "deriv_neg[T]")
(("" (assert)
(("" (delete -1 -2 -3 2)
(("" (grind :if-match nil)
(("" (inst?) (("" (assert) nil nil)) nil)) nil))
nil))
nil))
nil))
nil))
nil)
((deriv_maximum formula-decl nil derivative_props nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil)
(- const-decl "[T -> real]" real_fun_ops "reals/")
(real_lt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil)
(neg_derivable formula-decl nil derivatives_def nil)
(deriv_neg formula-decl nil derivatives_def nil)
(bool nonempty-type-eq-decl nil booleans nil)
(NOT const-decl "[bool -> bool]" booleans nil)
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil)
(minus_real_is_real application-judgement "real" reals nil))
nil))
(mean_value_aux_TCC1 0
(mean_value_aux_TCC1-1 nil 3297598424
("" (skosimp*)
(("" (expand "derivable?" -3) (("" (inst?) nil nil)) nil)) nil)
((derivable? const-decl "bool" derivatives nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil))
nil))
(mean_value_aux 0
(mean_value_aux-1 nil 3297598424
("" (skosimp)
((""
(case "FORALL (x : T) : a!1 <= x AND x <= b!1 IMPLIES f!1(x) = f!1(a!1)")
(("1" (case "T_pred((a!1 + b!1)/2)")
(("1" (inst 1 "(a!1 + b!1)/2")
(("1" (assert)
(("1"
(use "deriv_constant2"
("a" "a!1" "b" "b!1" "c" "(a!1 + b!1)/2"))
(("1" (ground)
(("1" (skosimp)
(("1" (inst-cp -4 "(a!1+b!1)/2")
(("1" (inst -4 "x!1") (("1" (assert) nil nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2" (assert) nil nil))
nil)
("2" (lemma "connected_domain")
(("2" (expand "connected?")
(("2" (inst - "a!1" "b!1" "_")
(("2" (inst?) (("2" (assert) nil nil)) nil)) nil))
nil))
nil))
nil)
("2" (skosimp)
(("2" (forward-chain "derivable_cont_fun[T]")
(("2" (case "f!1(x!1) < f!1(a!1)")
(("1" (use "min_in_interval[T]" ("a" "a!1" "b" "b!1"))
(("1" (assert)
(("1" (skosimp)
(("1" (expand "derivable?")
(("1" (inst -8 "c!1")
(("1"
(use "deriv_minimum"
("a" "a!1" "b" "b!1" "c" "c!1"))
(("1" (inst-cp -4 "x!1")
(("1" (assert)
(("1" (inst 2 "c!1")
(("1"
(ground)
(("1"
(skosimp)
(("1"
(inst?)
(("1" (assert) nil nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2" (lemma "connected_domain")
(("2" (expand "connected?") (("2" (propax) nil nil))
nil))
nil))
nil)
("2" (use "max_in_interval[T]" ("a" "a!1" "b" "b!1"))
(("1" (assert)
(("1" (skosimp)
(("1" (inst-cp -3 "x!1")
(("1" (assert)
(("1" (expand "derivable?")
(("1" (inst -8 "c!1")
(("1"
(use "deriv_maximum"
("a" "a!1" "b" "b!1" "c" "c!1"))
(("1" (inst 3 "c!1")
(("1"
(ground)
(("1"
(skosimp)
(("1"
(inst?)
(("1" (assert) nil nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2" (lemma "connected_domain")
(("2" (expand "connected?") (("2" (propax) nil nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
((= const-decl "[T, T -> boolean]" equalities nil)
(<= const-decl "bool" reals nil)
(AND const-decl "[bool, bool -> bool]" booleans nil)
(IMPLIES const-decl "[bool, bool -> bool]" booleans nil)
(bool nonempty-type-eq-decl nil booleans nil)
(T formal-subtype-decl nil derivative_props nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(real nonempty-type-from-decl nil reals nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(boolean nonempty-type-decl nil booleans nil)
(number nonempty-type-decl nil numbers nil)
(connected_domain formula-decl nil derivative_props nil)
(connected? const-decl "bool" deriv_domain_def nil)
(real_plus_real_is_real application-judgement "real" reals nil)
(a!1 skolem-const-decl "T" derivative_props nil)
(b!1 skolem-const-decl "T" derivative_props nil)
(deriv_constant2 formula-decl nil derivatives_alt nil)
(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil)
(real_lt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil)
(+ const-decl "[numfield, numfield -> numfield]" number_fields nil)
(/ const-decl "[numfield, nznum -> numfield]" number_fields nil)
(nznum nonempty-type-eq-decl nil number_fields nil)
(/= const-decl "boolean" notequal nil)
(numfield nonempty-type-eq-decl nil number_fields nil)
(real_div_nzreal_is_real application-judgement "real" reals nil)
(derivable_cont_fun formula-decl nil derivatives nil)
(max_in_interval formula-decl nil continuous_functions_props nil)
(deriv_maximum formula-decl nil derivative_props nil)
(min_in_interval formula-decl nil continuous_functions_props nil)
(f!1 skolem-const-decl "[T -> real]" derivative_props nil)
(continuous? const-decl "bool" continuous_functions nil)
(deriv_minimum formula-decl nil derivative_props nil)
(derivable? const-decl "bool" derivatives nil)
(< const-decl "bool" reals nil))
nil))
(mean_value_TCC1 0
(mean_value_TCC1-1 nil 3297598424
("" (skosimp*)
(("" (expand "derivable?" -) (("" (inst?) nil nil)) nil)) nil)
((derivable? const-decl "bool" derivatives nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil))
nil))
(mean_value 0
(mean_value-2 nil 3445340249
("" (skosimp)
(("" (name-replace "C" "b!1 - a!1" :hide? nil)
(("" (name-replace "B" "f!1(b!1) - f!1(a!1)" :hide? nil)
(("" (assert)
((""
(auto-rewrite-theory "derivatives[T]" :exclude
("derivable?" "deriv") :always? t)
((""
(auto-rewrite-theory "derivatives_def[T]" :exclude
("derivable?" "deriv") :always? t)
((""
(use "mean_value_aux"
("f"
"f!1 - (B/C) * (I[T] - const_fun(a!1::real))"))
(("" (ground)
(("1" (skosimp)
(("1" (inst?)
(("1" (expand "derivable?")
(("1" (inst -6 "c!1")
(("1" (assert)
(("1" (rewrite "deriv_diff[T]")
(("1"
(case-replace "deriv(f!1, c!1)= B/C")
(("1" (rewrite "div_cancel2") nil nil)
("2" (assert) nil nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
("2" (delete -3 2)
(("2" (grind)
(("2" (case "(B/C) * (b!1 - a!1) = B")
(("1" (assert) nil nil)
("2" (replace -2 1)
(("2" (rewrite "div_cancel2") nil nil)) nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil))
nil)
((real_minus_real_is_real application-judgement "real" reals nil)
(number nonempty-type-decl nil numbers nil)
(boolean nonempty-type-decl nil booleans nil)
(= const-decl "[T, T -> boolean]" equalities nil)
(number_field_pred const-decl "[number -> boolean]" number_fields
nil)
(numfield nonempty-type-eq-decl nil number_fields nil)
(- const-decl "[numfield, numfield -> numfield]" number_fields nil)
(number_field nonempty-type-from-decl nil number_fields nil)
(real_pred const-decl "[number_field -> boolean]" reals nil)
(real nonempty-type-from-decl nil reals nil)
(T_pred const-decl "[real -> boolean]" derivative_props nil)
(T formal-subtype-decl nil derivative_props nil)
(minus_odd_is_odd application-judgement "odd_int" integers nil)
(real_lt_is_strict_total_order name-judgement
"(strict_total_order?[real])" real_props nil)
(diff_derivable_fun formula-decl nil derivatives nil)
(scal_derivable formula-decl nil derivatives_def nil)
(diff_derivable formula-decl nil derivatives_def nil)
(const_derivable formula-decl nil derivatives_def nil)
(identity_derivable formula-decl nil derivatives_def nil)
(deriv_diff formula-decl nil derivatives_def nil)
(real_times_real_is_real application-judgement "real" reals nil)
(deriv_identity formula-decl nil derivatives_def nil)
(deriv_const formula-decl nil derivatives_def nil)
(deriv_scal formula-decl nil derivatives_def nil)
(nonzero_real nonempty-type-eq-decl nil reals nil)
(div_cancel2 formula-decl nil real_props nil)
(derivable? const-decl "bool" derivatives_def nil)
(deriv const-decl "real" derivatives_def nil)
(derivable? const-decl "bool" derivatives nil)
(real_plus_real_is_real application-judgement "real" reals nil)
(* const-decl "[numfield, numfield -> numfield]" number_fields nil)
(id_fun_continuous name-judgement "continuous_fun"
continuous_functions nil)
(derivable_id name-judgement "deriv_fun" derivatives nil)
(derivable_const application-judgement "deriv_fun" derivatives nil)
(constant_seq1 application-judgement "(convergent?)"
convergence_ops nil)
(real_div_nzreal_is_real application-judgement "real" reals nil)
(derivable_diff application-judgement "deriv_fun" derivatives nil)
(derivable_scal application-judgement "deriv_fun" derivatives nil)
(mean_value_aux formula-decl nil derivative_props nil)
(- const-decl "[T -> real]" real_fun_ops "reals/")
(* const-decl "[T -> real]" real_fun_ops "reals/")
(/= const-decl "boolean" notequal nil)
(nznum nonempty-type-eq-decl nil number_fields nil)
(/ const-decl "[numfield, nznum -> numfield]" number_fields nil)
(bool nonempty-type-eq-decl nil booleans nil)
(bijective? const-decl "bool" functions nil)
(I const-decl "(bijective?[T, T])" identity nil)
(const_fun const-decl "[T -> real]" real_fun_ops "reals/"))
nil)
(mean_value-1 nil 3297598424
("" (skosimp)
(("" (name-replace "C" "b!1 - a!1" :hide? nil)
(("" (name-replace "B" "f!1(b!1) - f!1(a!1)" :hide? nil)
(("" (assert)
((""
(auto-rewrite-theory "derivatives[T]" :exclude
("derivable" "deriv") :always? t)
((""
(auto-rewrite-theory "derivatives_def[T]" :exclude
("derivable" "deriv") :always? t)
((""
(use "mean_value_aux"
("f"
"f!1 - (B/C) * (I[T] - const_fun(a!1::real))"))
(("" (ground)
(("1" (skosimp)
(("1" (inst?)
(("1" (expand "derivable?")
(("1" (inst -6 "c!1")
(("1" (assert)
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(bool nonempty-type-eq-decl nil booleans nil)
(boolean nonempty-type-decl nil booleans nil)
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(real_le_is_total_order name-judgement "(total_order?[real])"
real_props nil)
(negreal_times_negreal_is_posreal judgement-tcc nil real_types nil)
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(derivable? const-decl "bool" derivatives_def nil)
(- const-decl "[numfield, numfield -> numfield]" number_fields nil)
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(both_sides_times_pos_gt1 formula-decl nil real_props nil)
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real_props nil)
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nil)
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(("1" (replace -1 -9)
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(("1" (assert) nil nil)
("2" (assert) nil nil))
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(("3" (assert)
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("" (skosimp*)
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(("" (typepred "g!1")
(("" (lemma "deriv_neg_fun" ("ff" "g!1"))
((""
(lemma "minimum_derivative"
("x" "x!1" "y1" "y1!1" "g" "-g!1"))
(("" (replace -2 -1)
(("" (split -1)
(("1" (expand "-" -1) (("1" (assert) nil nil)) nil)
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("3" (assert) nil nil)
("4" (skosimp*)
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nil))
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nil))
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nil))
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nil)
((T formal-subtype-decl nil derivative_props nil)
--> --------------------
--> maximum size reached
--> --------------------
¤ Dauer der Verarbeitung: 0.116 Sekunden
(vorverarbeitet)
¤
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