Cleanup
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@ -1,11 +1,6 @@
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import Mathlib.Analysis.Analytic.Linear
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import Init.Classical
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import Mathlib.Analysis.Analytic.Meromorphic
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import Mathlib.Topology.ContinuousOn
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import Mathlib.Analysis.Analytic.IsolatedZeros
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import Mathlib.Analysis.Analytic.Constructions
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import Nevanlinna.holomorphic
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import Mathlib.Analysis.Analytic.IsolatedZeros
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import Mathlib.Analysis.Complex.Basic
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theorem AnalyticOn.order_eq_nat_iff
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@ -97,7 +92,7 @@ theorem AnalyticOn.order_eq_nat_iff
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exact ⟨h₁g z₀ hz₀, ⟨h₂g, Filter.eventually_of_forall h₃g⟩⟩
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theorem AnalyticOn.order_of_mul
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theorem AnalyticAt.order_mul
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{f₁ f₂ : ℂ → ℂ}
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{z₀ : ℂ}
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(hf₁ : AnalyticAt ℂ f₁ z₀)
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@ -183,10 +178,11 @@ theorem AnalyticOn.eliminateZeros
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have h₁φ : AnalyticAt ℂ φ b₀ := by
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dsimp [φ]
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apply Finset.analyticAt_prod
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intro b hb
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intro b _
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apply AnalyticAt.pow
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apply AnalyticAt.sub
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apply analyticAt_id
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apply analyticAt_id ℂ
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exact analyticAt_const
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have h₂φ : h₁φ.order = (0 : ℕ) := by
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rw [AnalyticAt.order_eq_nat_iff h₁φ 0]
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@ -198,13 +194,16 @@ theorem AnalyticOn.eliminateZeros
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push_neg
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rw [Finset.prod_ne_zero_iff]
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intro a ha
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have AA : b₀.1 - a ≠ 0 := by
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sorry
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simp [AA]
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simp
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have : ¬ (b₀.1 - a.1 = 0) := by
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by_contra C
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rw [sub_eq_zero] at C
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rw [SetCoe.ext C] at hb
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tauto
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tauto
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· simp
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rw [AnalyticOn.order_of_mul h₁φ (h₁g₀ b₀ b₀.2)]
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rw [AnalyticAt.order_mul h₁φ (h₁g₀ b₀ b₀.2)]
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rw [h₂φ]
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simp
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@ -3,6 +3,7 @@ import Mathlib.Analysis.Analytic.Meromorphic
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import Mathlib.Topology.ContinuousOn
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import Mathlib.Analysis.Analytic.IsolatedZeros
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import Nevanlinna.holomorphic
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import Nevanlinna.analyticOn_zeroSet
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noncomputable def zeroDivisor
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