Create bilinear.lean
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import Mathlib.Algebra.BigOperators.Basic
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import Mathlib.Analysis.InnerProductSpace.Basic
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import Mathlib.Analysis.InnerProductSpace.Dual
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import Mathlib.Analysis.InnerProductSpace.PiL2
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open BigOperators
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open Finset
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variable {E : Type*} [NormedAddCommGroup E] [InnerProductSpace ℝ E] [FiniteDimensional ℝ E]
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variable {F : Type*} [NormedAddCommGroup F] [NormedSpace ℝ F]
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open TensorProduct
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example : 0 = 1 := by
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let B := (sesqFormOfInner (𝕜 := ℝ) (E := E)).flip
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have e: E := by sorry
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let C := B e
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let α := InnerProductSpace.toDual ℝ E
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let β : E →ₗ[ℝ] ℝ := by sorry
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let YY := E ⊗[ℝ] E
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let ZZ := TensorProduct.mapBilinear ℝ E E ℝ ℝ
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let A : E × E → LinearMap.BilinForm ℝ E := by
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unfold LinearMap.BilinForm
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intro (e₁, e₂)
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sorry
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sorry
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