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86 sonuçtan 1-3 arası sonuçlar
Sayfa 527
First of all , observe that without loss of generality we may assume that ß is
positive . Indeed , Naß = - N - a , - B , so that in the sequel we always assume that
ß > 0 . Moreover , by ( C2 ) , we have Naß = N - 0 , 8 + a , so that in what follows
we ...
First of all , observe that without loss of generality we may assume that ß is
positive . Indeed , Naß = - N - a , - B , so that in the sequel we always assume that
ß > 0 . Moreover , by ( C2 ) , we have Naß = N - 0 , 8 + a , so that in what follows
we ...
Sayfa 741
Assume additionally that m is even : m = 2k . In this case , ( 1 - ( be ) " , 0 , 0 , 0 ) , (
0 , 1 – ( bc ) " , 0 , 0 ) € Ker d ? . Adding to r suitable multiples of these elements ,
we may assume additionally that Libe ) m = M ( be ) m = 0 . Then the first ...
Assume additionally that m is even : m = 2k . In this case , ( 1 - ( be ) " , 0 , 0 , 0 ) , (
0 , 1 – ( bc ) " , 0 , 0 ) € Ker d ? . Adding to r suitable multiples of these elements ,
we may assume additionally that Libe ) m = M ( be ) m = 0 . Then the first ...
Sayfa 885
Assume that ( x , y ) = GL ( n , Z ) . Then det x = - 1 . Consequently , ( - x , y ) CSL (
n , Z ) . It is well known that the derived subgroup of GL ( n , Z ) is SL ( n , Z ) , i . e .
, any matrix SE SL ( n , Z ) can be represented in the form g = | ( 92i - 1 ( x , y ) ...
Assume that ( x , y ) = GL ( n , Z ) . Then det x = - 1 . Consequently , ( - x , y ) CSL (
n , Z ) . It is well known that the derived subgroup of GL ( n , Z ) is SL ( n , Z ) , i . e .
, any matrix SE SL ( n , Z ) can be represented in the form g = | ( 92i - 1 ( x , y ) ...
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İçindekiler
A Brudnyi and D Kinzebulatov Uniform subalgebras of 1 on the unit | 495 |
N A Vavilov Can one see the signs of structure constants? | 519 |
Waldemar Hołubowski A new measure of growth for groups and algebras | 545 |
Telif Hakkı | |
9 diğer bölüm gösterilmiyor
Diğer baskılar - Tümünü görüntüle
Sık kullanılan terimler ve kelime öbekleri
algebra arrangements assume base belong bundle called character Chevalley closed coefficients commutative complete condition consider constant construction contains continuous Corollary corresponding curve defined definition denote determined diagram direct elementary elements embedding equal equation equivalent example exists extension fact field FIGURE finite fixed formula function given Hence homogeneous homomorphism ideal identity implies inequality integer introduce inverse irreducible isomorphism Lemma linear Math Mathematical matrix maximal means module Moreover multiplication natural nonzero normal Note objects obtain operator particular permutation points polynomial positive present prime problem projective Proof properties Proposition prove Providence Recall relations Remark representation respectively result ring root satisfies scheme sequence similar solution space statement structure subgroup subset Suppose Theorem theory values variety vector weight