Some Mathematical Methods of PhysicsMcGraw-Hill, 1960 - 300 páginas |
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Página xiii
... McGraw - Hill Book Company , Inc. , New York , 1940 . Margenau , H. , and G. M. Murphy : " The Mathematics of Physics and Chemistry , " D. Van Nostrand Company , Inc. , New York , 1943 . Courant , R. , and D. Hilbert : " Methoden der ...
... McGraw - Hill Book Company , Inc. , New York , 1940 . Margenau , H. , and G. M. Murphy : " The Mathematics of Physics and Chemistry , " D. Van Nostrand Company , Inc. , New York , 1943 . Courant , R. , and D. Hilbert : " Methoden der ...
Página 197
... McGraw - Hill Book Company , Inc. , New York , 1949 . Sommerfeld , A .: " Partial Differential Equations in Physics , " chap . V , Academic Press , Inc. , New York , 1949 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical ...
... McGraw - Hill Book Company , Inc. , New York , 1949 . Sommerfeld , A .: " Partial Differential Equations in Physics , " chap . V , Academic Press , Inc. , New York , 1949 . Morse , P. M. , and H. Feshbach : " Methods of Theoretical ...
Página 232
... McGraw - Hill Book Company , Inc. , New York , 1940 . Frazer , R. A. , W. J. Duncan , and A. R. Collar : " Elementary Matrices , " Cambridge University Press , New York , 1947 . Hildebrand , F. B .: " Methods of Applied Mathematics ...
... McGraw - Hill Book Company , Inc. , New York , 1940 . Frazer , R. A. , W. J. Duncan , and A. R. Collar : " Elementary Matrices , " Cambridge University Press , New York , 1947 . Hildebrand , F. B .: " Methods of Applied Mathematics ...
Contenido
34 | 12 |
Solution for Diagonalizable Matrices | 21 |
The Evaluation of a Function of a Matrix for an Arbitrary Matrix | 38 |
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Términos y frases comunes
approximation arbitrary ax² basis Bessel functions boundary conditions Chap coefficients column consider constant continuous systems contour coordinates corresponding cylindrical functions d²/dx² defined definition denoted determinant diagonal differential equation Dirac notation domain eigencolumns eigenfunctions eigenvectors elements evaluate expansion F₁ finite number follows formula Fourier given Green's function Hence Hermitian Hermitian matrix Hermitian operator infinite integral inverse Laplacian linear operator linearly independent lowest eigenvalue Mathematical matrix McGraw-Hill Book Company method multiplication nonsingular normal number of degrees obtained orthonormality conditions Physics problem relations representation result Ritz method scattering sinh solution solve spherical spherical harmonics string Substitution theorem transform trial functions vanish variable vector space Verify w₁ wave write written x₁ Y₁ yields York zero ηπχ ди ду дх