St. Petersburg Mathematical Journal, 4. cilt,4-6. sayılarAmerican Mathematical Society, 1993 |
Kitabın içinden
17 sonuçtan 1-3 arası sonuçlar
Sayfa 750
... orbit O ( T ) = { UA " ( t ) : n = 1 , 2 , ... ) of any point is finite . Here A ( t ) : = { t = n ; 1 。 n ; ( t ) ... orbits was first considered in [ 3 ] . There the integral maximum principle ( 0.7 ) was proved under the assumption ...
... orbit O ( T ) = { UA " ( t ) : n = 1 , 2 , ... ) of any point is finite . Here A ( t ) : = { t = n ; 1 。 n ; ( t ) ... orbits was first considered in [ 3 ] . There the integral maximum principle ( 0.7 ) was proved under the assumption ...
Sayfa 753
... orbit is defined to be any minimal A - invariant subset OCT ( A ( 0 ) C 0 ) ; obviously , O = O ( t ) = { UA " ( t ) : n = 1 , 2 , ... } for all tε 0 . The collection of all orbits is denoted by . The mapping O ( · ) : t → O ( t ) ...
... orbit is defined to be any minimal A - invariant subset OCT ( A ( 0 ) C 0 ) ; obviously , O = O ( t ) = { UA " ( t ) : n = 1 , 2 , ... } for all tε 0 . The collection of all orbits is denoted by . The mapping O ( · ) : t → O ( t ) ...
Sayfa 757
... orbits do not have limit points . Hence , the same is true for the Q -orbits , where Q is the group generated by the diffeomorphisms 1 = poσ ; op1 . By construction , n ; = lr , and hence the orbits O ( t ) are finite for tЄT in view of ...
... orbits do not have limit points . Hence , the same is true for the Q -orbits , where Q is the group generated by the diffeomorphisms 1 = poσ ; op1 . By construction , n ; = lr , and hence the orbits O ( t ) are finite for tЄT in view of ...
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