St. Petersburg Mathematical Journal, 15. cilt,1-468. sayfalarAmerican Mathematical Society, 2004 |
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64 sonuçtan 1-3 arası sonuçlar
Sayfa 23
... finite , Theorem 5.1 implies the result of Val'skiĩ [ 26 ] . If F has finite Painlevé length ( finite girth ) , any bounded analytic function in G is representable by a Cauchy potential , and the Cauchy capacity coincides with the ...
... finite , Theorem 5.1 implies the result of Val'skiĩ [ 26 ] . If F has finite Painlevé length ( finite girth ) , any bounded analytic function in G is representable by a Cauchy potential , and the Cauchy capacity coincides with the ...
Sayfa 152
... finite measure dv ( t ) : ( 3.4 ) + x dv ( t ) > 0 . [ ** dv ( t ) < x . Then the function ( f ( z ) ) admits the representation ( 3.5 ) ( f ( z ) ) ~ 1 = 1 du ( t ) t - z where du ( t ) is a positive finite measure with the following ...
... finite measure dv ( t ) : ( 3.4 ) + x dv ( t ) > 0 . [ ** dv ( t ) < x . Then the function ( f ( z ) ) admits the representation ( 3.5 ) ( f ( z ) ) ~ 1 = 1 du ( t ) t - z where du ( t ) is a positive finite measure with the following ...
Sayfa 353
... finite Borel measure on R , X = LP ( μ , R ) ( p = [ 1,0 ] ) , and ( μ , L is a subspace of X. Then for every a > 0 the subset ( 5.4 ) is closed in X. Sa ( L ) : = { ƒ € L : μ { x ЄR : ƒ ( x ) = 0 } ≥ a } Proof . Assume the contrary ...
... finite Borel measure on R , X = LP ( μ , R ) ( p = [ 1,0 ] ) , and ( μ , L is a subspace of X. Then for every a > 0 the subset ( 5.4 ) is closed in X. Sa ( L ) : = { ƒ € L : μ { x ЄR : ƒ ( x ) = 0 } ≥ a } Proof . Assume the contrary ...
İçindekiler
2004 No 1 Pages 140 | 2 |
New modifications of the analytic capacity | 24 |
Mathematics Subject Classification Primary 31A15 | 139 |
Telif Hakkı | |
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American Mathematical Society analytic capacity analytic function arbitrary assume asymptotics BLSu Bmax Bmin boundary Cantor function Cauchy cell decomposition characteristic function closed braid condition consider continuous Corollary corresponding defined definition denote domain ʲ(Nint English transl equation equivalent exists finite formula geodesics Herglotz Hilbert space Hölder inequality identity implies inequality infimum integral interval Lebesgue Lebesgue measure Lemma linear function mapping Math matrix Moreover multigerm Nint nonzero obtain operator measure orthogonal p₁ Petersburg polynomial problem proof of Theorem Proposition proved q₁ relation representation respect satisfying selfadjoint selfadjoint operator sequence singular spectral spectrum subgroup subset subspace Suppose symplectic symplectomorphism tangent space Theorem theory uniqueness vector wavelet zero