St. Petersburg Mathematical Journal, 4. cilt,4-6. sayılarAmerican Mathematical Society, 1993 |
Kitabın içinden
55 sonuçtan 1-3 arası sonuçlar
Sayfa 811
... true for I ( P , ẞ * a ( z ) , ) , and we obtain our claim . + · The sum S ( B✶ a ( z ) ) of the Todd series is also holomorphic as a function of for fixed ( Z1 , ... , ZN ) . From this , by elementary methods of complex analysis it is ...
... true for I ( P , ẞ * a ( z ) , ) , and we obtain our claim . + · The sum S ( B✶ a ( z ) ) of the Todd series is also holomorphic as a function of for fixed ( Z1 , ... , ZN ) . From this , by elementary methods of complex analysis it is ...
Sayfa 826
... true for all 0 < a < 2 and follow from ( 24 ) . 8 We now go to the case where ẞ = 1 and 1 < a < 2. In this case ( 69 ) a - -a Saf = 2 ( sina ) ( a − 1 ) - [ * ° f ( y ) ( y = x ) 1 = a dy , π x L1 ( x ) = − ( cos TM a ) ( x + a ) a ...
... true for all 0 < a < 2 and follow from ( 24 ) . 8 We now go to the case where ẞ = 1 and 1 < a < 2. In this case ( 69 ) a - -a Saf = 2 ( sina ) ( a − 1 ) - [ * ° f ( y ) ( y = x ) 1 = a dy , π x L1 ( x ) = − ( cos TM a ) ( x + a ) a ...
Sayfa 1228
... true for the set C + defined according to ( 2.1 ) . Proof . The proof reduces to a justification of the assumptions of Lemma 2.3 . The first of them ( a ) is true by Lemma 2.1 , and the second ( b ) is true for : = K + because C ++ K + ...
... true for the set C + defined according to ( 2.1 ) . Proof . The proof reduces to a justification of the assumptions of Lemma 2.3 . The first of them ( a ) is true by Lemma 2.1 , and the second ( b ) is true for : = K + because C ++ K + ...
İçindekiler
MATHEMATICS | 665 |
150 | 832 |
ABSTRACT Let be an elliptic differential operator of order n2 with constant | 940 |
Telif Hakkı | |
4 diğer bölüm gösterilmiyor
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Sık kullanılan terimler ve kelime öbekleri
a₁ analytic assertion assume asymptotic Blaschke product boundary bounded C₁ cone consider const constant construction convex corresponding covector cubes D₁ decomposition defined definition denote diffeomorphisms differential domain eigenvalues English transl equality equation equivalent estimate exists finite follows function f H₁ hence Hilbert space Hölder holds inequality inner function integral irreducible lattice Lemma Leningrad Lie algebra linear M₁ mapping Mathematical Mathematics Subject Classification maximum principle morphism multiplicity nonlinear norm obtained operator pair perturbation polynomial problem proof of Theorem properties Proposition proved representation Riemann-Roch theorem S₁ satisfying the conditions scattering matrix scattering theory selfadjoint singular smooth solution Soviet Math space spectral spectrum Steklov subspace sufficiently Suppose t₁ Theorem 1.1 theory trace formula trace-class unique unitary V₁ zero