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  • ...atrix]] <math>A</math> is a number <math>\lambda</math> that satisfies the eigenvalue equation, ...gin of this equation, the [[characteristic polynomial]] of ''A'', is the [[eigenvalue problem]], which is to find the eigenvalues and associated [[eigenvectors]]
    4 KB (731 words) - 17:16, 11 December 2008
  • 12 bytes (1 word) - 18:20, 3 October 2007
  • ...matrix ''A'' if '''A''' ''v'' = &lambda; ''v''; the number &lambda; is the eigenvalue of the matrix '''A''' belonging to the eigenvector ''v''.
    217 bytes (33 words) - 02:56, 2 February 2009
  • Auto-populated based on [[Special:WhatLinksHere/Eigenvalue]]. Needs checking by a human.
    949 bytes (118 words) - 16:12, 11 January 2010

Page text matches

  • #REDIRECT [[Eigenvalue]]
    24 bytes (2 words) - 16:47, 10 December 2008
  • #REDIRECT [[Eigenvalue]]
    24 bytes (2 words) - 18:15, 3 October 2007
  • also known as linear variation method; used to solve numerically eigenvalue problems and partial differential equations with boundary conditions.
    181 bytes (22 words) - 12:13, 4 November 2008
  • ...atrix]] <math>A</math> is a number <math>\lambda</math> that satisfies the eigenvalue equation, ...gin of this equation, the [[characteristic polynomial]] of ''A'', is the [[eigenvalue problem]], which is to find the eigenvalues and associated [[eigenvectors]]
    4 KB (731 words) - 17:16, 11 December 2008
  • ...of the system corresponds to some linear operator ''O'' with a number of [[eigenvalue]]s *any measurement of the property ''O'' results in an eigenvalue of ''O''
    4 KB (558 words) - 12:26, 9 May 2011
  • ...matrix ''A'' if '''A''' ''v'' = &lambda; ''v''; the number &lambda; is the eigenvalue of the matrix '''A''' belonging to the eigenvector ''v''.
    217 bytes (33 words) - 02:56, 2 February 2009
  • ...s formulation of the [[Rayleigh-Ritz method]] for the solution of operator eigenvalue problems and partial differential equations. Further his name is attached t
    461 bytes (60 words) - 02:47, 14 September 2013
  • {{r|Eigenvalue}}
    498 bytes (63 words) - 18:22, 11 January 2010
  • {{r|Eigenvalue}}
    559 bytes (73 words) - 18:06, 11 January 2010
  • {{r|Eigenvalue}}
    553 bytes (67 words) - 11:46, 11 January 2010
  • Hermitian operators have real [[eigenvalue]]s. Indeed, let from which follows <math> q = q^*\, </math>, that is, the eigenvalue ''q'' is real.
    8 KB (1,273 words) - 11:29, 9 July 2009
  • {{R|Eigenvalue}}
    818 bytes (124 words) - 03:16, 5 November 2008
  • {{r|Eigenvalue}}
    965 bytes (124 words) - 17:23, 11 January 2010
  • Auto-populated based on [[Special:WhatLinksHere/Eigenvalue]]. Needs checking by a human.
    949 bytes (118 words) - 16:12, 11 January 2010
  • ...ems. Other topics in linear algebra, such as [[matrix|matrix algebra]], [[eigenvalue]]s and [[eigenvector]]s, [[linear operators]], [[matrix representation]]s,
    975 bytes (135 words) - 02:13, 3 September 2010
  • ...squared '''S'''<sup>2</sup> with quantum number ''S'' = 0. That is, the eigenvalue of '''S'''<sup>2</sup>, which has the general form ''S''(''S'' + 1), is zer
    3 KB (430 words) - 13:54, 3 March 2023
  • ...istic polynomial''' of a [[square matrix]] is a polynomial which has the [[eigenvalue]]s of the matrix as roots.
    911 bytes (131 words) - 22:35, 17 February 2009
  • ...thod''' is used for the computation of approximate solutions of operator [[eigenvalue]] equations and [[partial differential equation]]s. The method is based on ...sh;the time-independent [[Schrödinger equation]]&mdash;has the form of an eigenvalue equation of an operator commonly denoted by ''H'', the Hamilton (or energy)
    12 KB (1,893 words) - 04:51, 25 March 2010
  • ...h>\scriptstyle \lambda_i</math> and <math>\scriptstyle \psi_i</math> is an eigenvalue and eigenvector of ''X'', respectively. For a simple illustration, consider
    5 KB (726 words) - 01:57, 30 September 2009
  • The diagonal entries are the [[eigenvalue]]s of a diagonal matrix.
    2 KB (230 words) - 02:39, 7 January 2009
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