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Page 1817
U . S . A . 33 , 128 - 132 ( 1947 ) . 2 . An oscillation theorem for continuous
spectra . Proc . Nat . Acad . Sci . U . S . A . 33 , 376 - 379 ( 1947 ) . The asymptotic
arcus variation of solutions of real linear differential equations of second order .
Amer .
U . S . A . 33 , 128 - 132 ( 1947 ) . 2 . An oscillation theorem for continuous
spectra . Proc . Nat . Acad . Sci . U . S . A . 33 , 376 - 379 ( 1947 ) . The asymptotic
arcus variation of solutions of real linear differential equations of second order .
Amer .
Page 1852
On one parameter semi - groups of linear transformations . Proc . Amer . Math .
Soc . 2 , 234 - 237 ( 1951 ) . 9 . Semi - groups of operators . Bull . Amer . Math .
Soc . 61 , 16 - 33 ( 1955 ) . An inversion formula for Laplace transforms and semi
...
On one parameter semi - groups of linear transformations . Proc . Amer . Math .
Soc . 2 , 234 - 237 ( 1951 ) . 9 . Semi - groups of operators . Bull . Amer . Math .
Soc . 61 , 16 - 33 ( 1955 ) . An inversion formula for Laplace transforms and semi
...
Page 1912
14 ( 12 ) Line integral , definition , ( 225 ) Linear dimension , ( 91 ) Linear
functional , ( 38 ) . ( See also Functional ) Linear manifold , ( 36 ) . ( See also
Manifold ) Linear operator , ( 36 ) . ( See also Bspace ) Linear space , 1 . 11
normed , II . 3 .
14 ( 12 ) Line integral , definition , ( 225 ) Linear dimension , ( 91 ) Linear
functional , ( 38 ) . ( See also Functional ) Linear manifold , ( 36 ) . ( See also
Manifold ) Linear operator , ( 36 ) . ( See also Bspace ) Linear space , 1 . 11
normed , II . 3 .
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Contents
IX | 859 |
Eigenvalues and Eigenvectors | 903 |
Spectral Representation | 911 |
Copyright | |
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additive Akad algebra Amer analytic assume Banach spaces basis belongs Borel boundary conditions boundary values bounded called clear closed closure coefficients compact complex Consequently constant contains continuous converges Corollary corresponding defined Definition denote dense determined domain eigenvalues element equal equation essential spectrum evident Exercise exists extension finite follows formal differential operator formula function function f given Hence Hilbert space identity independent indices inequality integral interval Lemma limit linear mapping Math matrix measure multiplicity neighborhood norm obtained partial positive preceding present problem projection proof properties prove range regular remark representation respectively restriction result Russian satisfies seen sequence shown singular solution spectral square-integrable statement subset subspace sufficiently Suppose symmetric Theorem theory topology transform unique vanishes vector zero