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单词 ConceptsInLinearAlgebra
释义

concepts in linear algebra


The aim of this entry is to present a list of the keyobjects and operators used in linear algebraMathworldPlanetmath. Each entry in thelist links (or will link in the future) to the corresponding PlanetMathentry where the object is presented in greater detail. For convenience,this list also presents the encouraged notation to use (at PlanetMath)for these objects.

Some of this notation is simply an example of more general notation, either notation in set theoryMathworldPlanetmath or notation for functions. Some notation is also standard from category theoryMathworldPlanetmathPlanetmathPlanetmathPlanetmath.

Suppose V is a vector spaceMathworldPlanetmath over a field K. Where the field K is clear from context it is sometimes eliminated from the notation. Let L be a linear operator, or linear transformation, from V to W, and E be an endomorphismPlanetmathPlanetmathPlanetmath of V.

  • (V,W), the set of linear transformations between vector spaces V and W (also HomK(V,W)),

  • basis of a vector space and the matrix associated with the basis,

  • dimKV, dimensionPlanetmathPlanetmath (http://planetmath.org/Dimension2) of V,

  • span{e1,,en} vector space spanned by vectors {ei} (note that the list of vectors need not be finite). Some other notations are (e1,e2,,en) or e1,e2,,en (do not confuse last one with similarPlanetmathPlanetmath inner product notation),

  • detE, determinantMathworldPlanetmath of a linear operator,

  • trE, trace of a linear operator (also traceE),

  • imL, image of a linear operator (also imgL and L(V)),

  • kerL, kernel of a linear operator,

  • for sets A,B and a point xV, the expressions A+B, A-B, A+xare the Minkowski sumsPlanetmathPlanetmath (http://planetmath.org/MinkowskiSum2) (not especially if A and B are subspacesPlanetmathPlanetmath, then their sum is a subspace, but the result may not be a direct sumMathworldPlanetmathPlanetmathPlanetmathPlanetmath),

  • V, dual spacePlanetmathPlanetmath of a vector space V (also V or HomK(V,K)),

  • A, adjoint operator of a linear operator,

  • VW, direct sum of vector spaces V and W (both internal end external),

  • VKW, tensor productPlanetmathPlanetmathPlanetmath of V and W, and

  • VW, antisymmetrized tensor product (also called the wedge productMathworldPlanetmath),

  • bilinear formsPlanetmathPlanetmath and quadratic formsMathworldPlanetmath

  • generalizationsPlanetmathPlanetmath of vector spaces over a field to vector spaces over a division ring to modules over a ring.

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更新时间:2025/5/4 2:58:11