example 5.10 Functions on a set

open in the book · parts/02-mathematical-methods/03-linear-algebra-representations.tex:694 · p. 104

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example 5.10: Functions on a set5.10definition 4.33: Vector space4.33definition 5.7: Vector subspace5.7definition 4.8: Commutativity; abelian structure4.8definition 4.32: Field4.32definition 4.31: Module4.31definition 4.34: Algebra4.34definition 5.121: Algebra5.121definition 5.101: External direct sum5.101definition 5.18: Inner product5.18definition 5.5: Linear combination5.5definition 5.37: Linear transformation5.37definition 5.19: Norm5.19definition 5.3: Scalar5.3definition 5.115: Sesquilinear form5.115definition 5.4: Vector5.4example 5.8: The coordinate spaces ℝ^n and ℂ^n5.8example 5.9: The matrices of a given shape5.9corollary 5.29: Orthogonal decomposition5.29definition 12.13: Convex set12.13definition 5.12: Subspace generated by a set of vectors5.12definition 5.103: Sum of subspaces; internal direct sum5.103definition 5.39: Kernel, image, nullity, rank5.39definition 5.163: Faithful, equivalent, invariant5.163definition 5.147: Invariant subspace5.147proposition 5.61: Annihilator of a subspace5.61proposition 5.107: The union of two subspaces5.107

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depends_on Vector space declared parts/02-mathematical-methods/03-linear-algebra-representations.tex:721
depends_on Vector subspace declared parts/02-mathematical-methods/03-linear-algebra-representations.tex:721