St. Petersburg Mathematical Journal, 5. cilt,4-6. sayılarAmerican Mathematical Society, 1994 |
Kitabın içinden
60 sonuçtan 1-3 arası sonuçlar
Sayfa 702
... Corollary 3.5 can be reformulated as follows . Corollary 3.5 ' . Let μ ( Ẽ 、 e2xintẼ ) = loc = v , ƒ € EP " ( t , x ) , and ↓ 1 、 člƒ | 2 ≤ x2 . There exists a subset Ẽ ' CẼ of measure μ ( Ē ' ) ≥1⁄2 such that A ' ' ' n3μ ( Ē ) 2 ...
... Corollary 3.5 can be reformulated as follows . Corollary 3.5 ' . Let μ ( Ẽ 、 e2xintẼ ) = loc = v , ƒ € EP " ( t , x ) , and ↓ 1 、 člƒ | 2 ≤ x2 . There exists a subset Ẽ ' CẼ of measure μ ( Ē ' ) ≥1⁄2 such that A ' ' ' n3μ ( Ē ) 2 ...
Sayfa 1184
... corollary , may be used in the consid- eration of Case 2 . Corollary . For any u Є k2 ( S ) , the following relations hold : - 1 ) ( 1 − t ) aq ( mu ) = aq ( ( m − t ) u ) ; 2 ) N⚫aq ( m3u ) = ag ( Mu ) , where N = Σo , M = Ĺ m3 ...
... corollary , may be used in the consid- eration of Case 2 . Corollary . For any u Є k2 ( S ) , the following relations hold : - 1 ) ( 1 − t ) aq ( mu ) = aq ( ( m − t ) u ) ; 2 ) N⚫aq ( m3u ) = ag ( Mu ) , where N = Σo , M = Ĺ m3 ...
Sayfa 1199
... corollary to Lemma 5.3 from [ 4 ] for m = -1 and by Property 4.1 of a cyclic algebra stated in §4 of the present paper , we get us = αq ( v ) = αq ( ( 1 − t ) w ) + 2 ′′ −1aq ( $ s ) = ( 1 + t ) aq ( w ) + a2 ( ss ) . - Now we ...
... corollary to Lemma 5.3 from [ 4 ] for m = -1 and by Property 4.1 of a cyclic algebra stated in §4 of the present paper , we get us = αq ( v ) = αq ( ( 1 − t ) w ) + 2 ′′ −1aq ( $ s ) = ( 1 + t ) aq ( w ) + a2 ( ss ) . - Now we ...
İçindekiler
LOCAL ESTIMATES OF EXPONENTIAL POLYNOMIALS | 665 |
Random periodization technique and the Morgan theorem | 678 |
Mathematics Subject Classification Primary 4202 | 719 |
Telif Hakkı | |
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a₁ algebra arbitrary assume asymptotic B₁ Bergman spaces boundary bounded coefficients coincides commutative compact condition cone consider convergence convex Corollary corresponding d₁ decomposition defined definition denote diagram differential distribution dµ(R elements embedding English transl equation equivalent estimate exists exponential polynomial finite follows formula function ƒ functor Gibbs phenomenon Hankel operators Hence Hom(X homomorphism homotopy ideal implies inequality integral interval L²(R lattice Lebesgue measure Lemma linear M₁ mapping Math Mathematical Mathematics Subject Classification matrix metric modulo Moreover N₁ norm obtain orthogonal P₁ problem Proof of Theorem properties Proposition proved quadratic forms quadratic space Radon transform relation representation respect ring satisfying selfadjoint sequence singular smooth solenoidal solution spectrum subset subspace sufficiently theory Toeplitz operators topology transformation u₁ V₁ whence zero