Linear Operators: Spectral operators |
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Page 2325
5 and from formulas ( 16 ) and ( 14 ) . It also follows , from Lemma 3 . 5 , formula (
16 ) , and formula ( 14 ) , that the zero Én of M ( u ) in Rom has the asymptotic
representation 5x ~ 20n + & + za + Smo - m , and that the zero & n of M ( u ) in R 2
...
5 and from formulas ( 16 ) and ( 14 ) . It also follows , from Lemma 3 . 5 , formula (
16 ) , and formula ( 14 ) , that the zero Én of M ( u ) in Rom has the asymptotic
representation 5x ~ 20n + & + za + Smo - m , and that the zero & n of M ( u ) in R 2
...
Page 2330
Since Guis analytic by formula ( 21 ) , we have only to take the residues at Śm
and Šm of the contour integral ( 27 ) ( nun – 1 R ( um ; T ) — nun - 1 Gu ) du . By
Lemma 3 , if we take any sufficiently small ε > 0 , and let Om denote the circle with
...
Since Guis analytic by formula ( 21 ) , we have only to take the residues at Śm
and Šm of the contour integral ( 27 ) ( nun – 1 R ( um ; T ) — nun - 1 Gu ) du . By
Lemma 3 , if we take any sufficiently small ε > 0 , and let Om denote the circle with
...
Page 2340
It follows immediately from formulas ( 52 ) and ( 34 ) that ( B ; Guf ) can be written
in the form K = 1 ( 55 ) ( B , Guf ) = het ... coefficients a , a ' in the constant terms of
A ( u ) and A ' ( u ) are of course the same constants at ap and bp of formula ...
It follows immediately from formulas ( 52 ) and ( 34 ) that ( B ; Guf ) can be written
in the form K = 1 ( 55 ) ( B , Guf ) = het ... coefficients a , a ' in the constant terms of
A ( u ) and A ' ( u ) are of course the same constants at ap and bp of formula ...
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