Some Mathematical Methods of PhysicsMcGraw-Hill, 1960 - 300 páginas |
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Página 110
... York , 1947 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , " pp . 122-123 and 771–774 , McGraw - Hill Book Company , Inc. , New York , 1953 . CHAPTER 9 The Laplacian ( V ) in One Dimension 110 SYSTEMS WITH AN ...
... York , 1947 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , " pp . 122-123 and 771–774 , McGraw - Hill Book Company , Inc. , New York , 1953 . CHAPTER 9 The Laplacian ( V ) in One Dimension 110 SYSTEMS WITH AN ...
Página 210
... York , 1949 . Courant , R. , and D. Hilbert : " Methods of Mathematical Physics , " vol . I , pp . 343–350 , Interscience Publishers , Inc. , 1953 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , " sec . 9.1 ...
... York , 1949 . Courant , R. , and D. Hilbert : " Methods of Mathematical Physics , " vol . I , pp . 343–350 , Interscience Publishers , Inc. , 1953 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , " sec . 9.1 ...
Página 224
... York , 1935 . Courant , R. , and D. Hilbert : " Methods of Mathematical Physics , " vol . I , chap . 6 , Interscience Publishers , Inc. , New York , 1953 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , ” sec . 9.4 ...
... York , 1935 . Courant , R. , and D. Hilbert : " Methods of Mathematical Physics , " vol . I , chap . 6 , Interscience Publishers , Inc. , New York , 1953 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical Physics , ” sec . 9.4 ...
Contenido
Perturbation of Eigenvalues | 14 |
The Laplacian v2 in One Dimension | 18 |
Solution for Diagonalizable Matrices | 21 |
Derechos de autor | |
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Términos y frases comunes
approximate arbitrary ax² basis Bessel function boundary conditions chap coefficients column consider constant continuous systems contour coordinates corresponding cylindrical functions d²/dx² defined denoted determinant diagonal differential equation Dirac notation domain eigen eigencolumns eigenfunctions eigenvalue equation eigenvector eikr evaluate expansion finite number follows Fourier given Green's function Hence Hermitian Hermitian matrix Hermitian operator infinite integral inverse Laplace transform Laplacian linear operator linearly independent lowest eigenvalue matrix membrane method multiplication nonsingular normal obtained orthonormality conditions plane problem procedure relations representation result satisfies the boundary scattering sinh solve spherical spherical harmonics string Substitution theorem trial functions vanish variable vector space Verify wave write written y₁ yields York zero ηπχ πο ποχ ди ду дх