St. Petersburg Mathematical Journal, 13. cilt,1-507. sayfalarAmerican Mathematical Society, 2002 |
Kitabın içinden
82 sonuçtan 1-3 arası sonuçlar
Sayfa 364
... lemma is proved . ப Lemma 11. If g = Te1 - e2v + es , then g ( s ) € R ( S ) . = Te11 - е2131 + € 31 , where V31 = Proof . With respect to the joint basis S1 , we have g ( € 31 , € 31 ) . By Lemma 5 , s Є R ( S ) . Applying Lemma 10 and ...
... lemma is proved . ப Lemma 11. If g = Te1 - e2v + es , then g ( s ) € R ( S ) . = Te11 - е2131 + € 31 , where V31 = Proof . With respect to the joint basis S1 , we have g ( € 31 , € 31 ) . By Lemma 5 , s Є R ( S ) . Applying Lemma 10 and ...
Sayfa 380
... lemma follows the lines of that of Lemma 3.3 , and we omit it . Lemma 3.7 . The group Y ( 0 ) induces a subgroup of the permutation group of the set R ( 0 ) R0 ) . Proof . This is a consequence of Lemmas 3.6 and 3.3 . Lemma 3.8 . The ...
... lemma follows the lines of that of Lemma 3.3 , and we omit it . Lemma 3.7 . The group Y ( 0 ) induces a subgroup of the permutation group of the set R ( 0 ) R0 ) . Proof . This is a consequence of Lemmas 3.6 and 3.3 . Lemma 3.8 . The ...
Sayfa 384
... lemma is proved . Y ( 0 ) dı Lemma 4.2 . Suppose g € T ( Y ) and g 1. Then gЄ d11Yd1 . Proof . The lemma is proved by successive application of [ 4 , Lemma 15 ] , Lemma 4.1 , and Proposition 3.1 . Lemma 4.3 . Let g € T ( Y ( 0 ) ) , g 1 ...
... lemma is proved . Y ( 0 ) dı Lemma 4.2 . Suppose g € T ( Y ) and g 1. Then gЄ d11Yd1 . Proof . The lemma is proved by successive application of [ 4 , Lemma 15 ] , Lemma 4.1 , and Proposition 3.1 . Lemma 4.3 . Let g € T ( Y ( 0 ) ) , g 1 ...
İçindekiler
Башкиров Е Л Группа Sping и некоторые подгруппы унитарной | 43 |
Васюнин В Купин С Критерии подобия диссипативного инте | 65 |
Вебер К Пажитнов А Рудолф Л Число МорсаНовикова для | 105 |
Telif Hakkı | |
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a₁ Abelian algebra analytic arbitrary assume basis boundary bounded codes coefficients coherent condition consider Corollary corresponding defined definition denote direct limit domain elements English transl epimorphism equation equivalent estimate exact sequence finitely presented formula FP-injective free Lie function functor graph G Grothendieck category homomorphism implies inequality integral isomorphism K₁ K₁v Km F Lemma Lie superalgebra linear localizing subcategory Lyapunov dimension Math Mathematics Subject Classification Matn,s Fq metric module monomorphism morphism Morse function Newton diagram norm obtain operator orthogonal P₁ polynomial polytope problem proof of Theorem properties Proposition proved quotient category rectangles relation respect result right A-module ring S-ring S₁ satisfies selfadjoint Serre subcategory singular point solution space statement subgroup Subsection subspaces Suppose Theorem 1.1 theory topology v₁ vector field vertex vertices