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35 sonuçtan 1-3 arası sonuçlar
Sayfa 150
A refinable function 6 with dilation A and mask m is said to be colorable if there is
a digit set D such that suppm C D and X ( A , D ) < 0 . We put ( 2 . 26 ) x ( 6 ) : = inf
{ x ( A , D ) : suppm C D } . Example 2 . 11 . Let T : = T ( A , D ) be a tile , and let ...
A refinable function 6 with dilation A and mask m is said to be colorable if there is
a digit set D such that suppm C D and X ( A , D ) < 0 . We put ( 2 . 26 ) x ( 6 ) : = inf
{ x ( A , D ) : suppm C D } . Example 2 . 11 . Let T : = T ( A , D ) be a tile , and let ...
Sayfa 144
... of " matrix dilated ” and translated copies of a bounded refinable function 6 : R
→ R . Specifically , we have Wik ( r ) : = 4 ( A r – k ) for some matrix A . The
function y is required to satisfy a scaling equation with respect to the matrix A and
some ...
... of " matrix dilated ” and translated copies of a bounded refinable function 6 : R
→ R . Specifically , we have Wik ( r ) : = 4 ( A r – k ) for some matrix A . The
function y is required to satisfy a scaling equation with respect to the matrix A and
some ...
Sayfa 150
A refinable function 6 with dilation A and mask m is said to be colorable if there is
a digit set D such that suppm C D and X ( A , D ) < 0 . We put ( 2 . 26 ) x ( 6 ) : = inf
{ x ( A , D ) : suppm C D } . Example 2 . 11 . Let T : = T ( A , D ) be a tile , and let ...
A refinable function 6 with dilation A and mask m is said to be colorable if there is
a digit set D such that suppm C D and X ( A , D ) < 0 . We put ( 2 . 26 ) x ( 6 ) : = inf
{ x ( A , D ) : suppm C D } . Example 2 . 11 . Let T : = T ( A , D ) be a tile , and let ...
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İçindekiler
ISOMETRIC EMBEDDINGS OF FINITEDIMENSIONAL loSPACES | 23 |
Dedicated to M Sh Birman on the occasion of his 75th birthday | 285 |
ABSTRACT The nonexistence of isometric embeddings em line with p q is proved | 296 |
Telif Hakkı | |
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Sık kullanılan terimler ve kelime öbekleri
analytic apply approximation assume asymptotic belongs BKN-equation block boundary bounded called closed coefficients collection compatible complete components condition Consequently consider constant construction contains continuous corresponding covering defined definition denote differential domain edge eigenvalues embedding English equal equation estimate example exists extension fact fibers field finite fixed formula function given graph harmonic identity implies inequality integral introduce invertible Lemma linear manifold Math Mathematical matrix monodromy Moreover norm obtain operator oriented pair particular periodic polynomial positive potential present problem proof properties Proposition prove rational relation Remark representation respect result satisfies selfadjoint separation singular smooth solution space spectral spectrum statement Subsection sufficiently Suppose surface symmetric Theorem theory transformation transl true unique values vector vertex vertices zero