St. Petersburg Mathematical Journal, 4. cilt,4-6. sayılarAmerican Mathematical Society, 1993 |
Kitabın içinden
84 sonuçtan 1-3 arası sonuçlar
Sayfa 661
... follows from Theorem 6.2 that the Green function is representable in the form Go ( x , y ) = ( Yx , Yy ) L2 ( 2 ) ... follows from Theorem 3.2 that + Ŵ1⁄2 ( N ) = Ŵ1⁄2 ( N ) – Ŵ1⁄2 ( N ) . ( 22 ) It follows from Theorems 4.2 and 4.3 that ...
... follows from Theorem 6.2 that the Green function is representable in the form Go ( x , y ) = ( Yx , Yy ) L2 ( 2 ) ... follows from Theorem 3.2 that + Ŵ1⁄2 ( N ) = Ŵ1⁄2 ( N ) – Ŵ1⁄2 ( N ) . ( 22 ) It follows from Theorems 4.2 and 4.3 that ...
Sayfa 717
... follows from the fact that the function x ( p ) is continuous on ( 0 , л ] and has a limit as p → +0 . It follows from the above that for pЄ ( 0 , π ] the points x ' ; ( p ) fill the interval ( 2лj , c ' ] . The zeros x + ( p ) and x ...
... follows from the fact that the function x ( p ) is continuous on ( 0 , л ] and has a limit as p → +0 . It follows from the above that for pЄ ( 0 , π ] the points x ' ; ( p ) fill the interval ( 2лj , c ' ] . The zeros x + ( p ) and x ...
Sayfa 786
... follows from ( 2.14 ) and part ( 3 ) that and the mapping X is injective on V. Consequently , dim V < dim V. On the other hand , it follows from X ( V ) V that dim V≤ inequality is valid for all μ e C ) . Consequently , X ( ) = V r ...
... follows from ( 2.14 ) and part ( 3 ) that and the mapping X is injective on V. Consequently , dim V < dim V. On the other hand , it follows from X ( V ) V that dim V≤ inequality is valid for all μ e C ) . Consequently , X ( ) = V r ...
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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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