definition 5.47 Inverse of a linear transformation

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definition 5.47: Inverse of a linear transformation5.47definition 5.37: Linear transformation5.37definition 12.49: Resolvent set; spectrum12.49proposition 5.48: Existence, uniqueness, and linearity of the inverse5.48definition 4.33: Vector space4.33definition 7.99: Differentiability at a point7.99definition 12.35: Bounded operator; operator norm12.35definition 12.69: Operator with a domain12.69definition 5.41: Adjoint5.41definition 5.110: Bilinear map5.110definition 5.128: Derivation5.128definition 5.56: Endomorphism5.56definition 5.46: Functional5.46definition 5.53: Isomorphism5.53definition 5.39: Kernel, image, nullity, rank5.39definition 5.66: Pushforward5.66lemma A.337: A nilpotent map has nilpotent adjointA.337proposition 5.125: prop:lin-matrix-algebra5.125proposition 5.45: prop:lin-matrix-unique5.45theorem A.335: Jordan decompositionA.335theorem 5.158: Schur's first lemma5.158definition 12.50: Point, continuous and residual spectrum12.50lemma A.240: Spectral mapping for polynomialsA.240lemma A.239: The norm of a self-adjoint operator lies in its spectrumA.239proposition 12.52: Neumann series; the spectrum is bounded12.52proposition 5.49: Injective, surjective, invertible5.49proposition 5.51: prop:lin-matrix-inverse5.51proposition 5.136: \Sp(2n,ℝ) is a subgroup of \GL(2n,ℝ)5.136proof : ch:03-linear-algebra-representations@proof-17proof

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depends_on Linear transformation declared parts/02-mathematical-methods/03-linear-algebra-representations.tex:2249
depends_on Resolvent set; spectrum declared parts/02-mathematical-methods/10-hilbert-spaces.tex:1309
depends_on Existence, uniqueness, and linearity of the inverse declared parts/02-mathematical-methods/03-linear-algebra-representations.tex:2262