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63 sonuçtan 1-3 arası sonuçlar
Sayfa 922
We can apply ( interpolatory ) Theorem 11 . 3 to the operator ( 17 . 1 ) with
complex matrix g ( x ) , and if ; E Loo , j = 1 , . . . , d , then Theorem 11 . 4 is
applicable . Now , in general , the third term of the correctors K ( € ) and Ko ( € ) is
nonzero .
We can apply ( interpolatory ) Theorem 11 . 3 to the operator ( 17 . 1 ) with
complex matrix g ( x ) , and if ; E Loo , j = 1 , . . . , d , then Theorem 11 . 4 is
applicable . Now , in general , the third term of the correctors K ( € ) and Ko ( € ) is
nonzero .
Sayfa 932
We can apply ( interpolatory ) Theorem 16 . 7 to the resolvent ( Me + ... Applying (
16 . 14 ) , for 0 < s < 1 and 0 < € < 1 we obtain | | ( 0° ) - ' Ñ€ + 1 ) - 1 - ( ( ÃO + 1 ) -
1 + €K ( E ) ) ( 0 * ) * | | L2 ( R4 ) - - H * ( R4 ) < Čge2 - 8 . Here Čo = CQ , | | $ | | ...
We can apply ( interpolatory ) Theorem 16 . 7 to the resolvent ( Me + ... Applying (
16 . 14 ) , for 0 < s < 1 and 0 < € < 1 we obtain | | ( 0° ) - ' Ñ€ + 1 ) - 1 - ( ( ÃO + 1 ) -
1 + €K ( E ) ) ( 0 * ) * | | L2 ( R4 ) - - H * ( R4 ) < Čge2 - 8 . Here Čo = CQ , | | $ | | ...
Sayfa 935
Since gf = 9 + , we can apply Theorem 12 . 4 . This yields the following . Theorem
20 . 3 ( E ) . Under the assumptions of Theorem 20 . 1 ( + ) , let ut , € be the
solution of equation ( 20 . 9 + ) , and let uz be the solution of equation ( 20 . 10 + )
.
Since gf = 9 + , we can apply Theorem 12 . 4 . This yields the following . Theorem
20 . 3 ( E ) . Under the assumptions of Theorem 20 . 1 ( + ) , let ut , € be the
solution of equation ( 20 . 9 + ) , and let uz be the solution of equation ( 20 . 10 + )
.
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İçindekiler
Asekritova and N Kruglyak Interpolation of Besov spaces in the nondiagonal | 511 |
N Belousov and A A Makhnev On edgeregular graphs with k 361 3 | 517 |
Generalov and N Yu Kosovskaya Hochschild cohomology of the Liu | 539 |
Telif Hakkı | |
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Diğer baskılar - Tümünü görüntüle
Sık kullanılan terimler ve kelime öbekleri
adjacent algebra apply approximation assume assumptions of Theorem bounded braid BSu2 called closed coefficients commutative complex consider constant constructed contains continuous convergence Corollary corrector corresponding cycle defined definition denote depends dérivateur diagram categories domain elements equal equation equivalent estimate exact example exists extension fact factorization field finite following result formula function functor given graph Hence homotopy ideal implies inequality integral invariant isomorphism lattice Lemma Math Mathematical matrix means module morphism multiplication natural norm Note object obtain operator pair parameters periodic polynomial positive problem Proof Proposition proved reduces refinable relations Remark respectively ring satisfies scheme sequence similar smooth solution space square statement Subsection subspace suffices Suppose symbol symmetric takes theory twisted values vector vertex vertices zero