Linear Operators: Spectral theory |
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Page 1321
The matrices l ' = ( Vis ) and I ' = ( yúj ) in the preceding theorem are uniquely determined by the jump equations and by the boundary conditions defining T. PROOF . We have seen in the derivation of Theorem 8 that the functions ...
The matrices l ' = ( Vis ) and I ' = ( yúj ) in the preceding theorem are uniquely determined by the jump equations and by the boundary conditions defining T. PROOF . We have seen in the derivation of Theorem 8 that the functions ...
Page 1323
To determine the u * + v * = ( p * + q * ) - ( u * + v * ) = ( n + k * ) - ( u * + v * ) numbers a ; lt ) and Bi ( t ) ... By symmetry ( y is ) and ( y's ) are also determined uniquely by the jump conditions and the boundary conditions Ez ...
To determine the u * + v * = ( p * + q * ) - ( u * + v * ) = ( n + k * ) - ( u * + v * ) numbers a ; lt ) and Bi ( t ) ... By symmetry ( y is ) and ( y's ) are also determined uniquely by the jump conditions and the boundary conditions Ez ...
Page 1497
Then by Theorems XII.4.28 , 4.1 , and 4.2 , these sets of boundary conditions determine self adjoint operators T ... Let the eigenvalues determined by the periodic boundary conditions stated above be enumerated in increasing order ...
Then by Theorems XII.4.28 , 4.1 , and 4.2 , these sets of boundary conditions determine self adjoint operators T ... Let the eigenvalues determined by the periodic boundary conditions stated above be enumerated in increasing order ...
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Contents
BAlgebras | 859 |
Miscellaneous Applications | 937 |
Compact Groups | 945 |
Copyright | |
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