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Let (W,S)(W,S) be a Coxeter system with a strictly complete Coxeter graph. The present paper concerns the set Red(z)Red(z) of all reduced expressions for any z∈WzW. By associating each bc-expression to a certain symbol, we describe the set Red(z)Red(z) and compute its cardinal |Red(z)||Red(z)| in terms of symbols. An explicit formula for |Red(z)||Red(z)| is deduced, where the Fibonacci numbers play a crucial role.  相似文献   

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Let KK be a closed convex subset of a qq-uniformly smooth separable Banach space, T:K→KT:KK a strictly pseudocontractive mapping, and f:K→Kf:KK an LL-Lispschitzian strongly pseudocontractive mapping. For any t∈(0,1)t(0,1), let xtxt be the unique fixed point of tf+(1-t)Ttf+(1-t)T. We prove that if TT has a fixed point, then {xt}{xt} converges to a fixed point of TT as tt approaches to 0.  相似文献   

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We study the regularity up to the boundary of solutions to the Dirichlet problem for the fractional Laplacian. We prove that if u   is a solution of (−Δ)su=g(Δ)su=g in Ω  , u≡0u0 in RnRn\Ω, for some s∈(0,1)s(0,1) and g∈L(Ω)gL(Ω), then u   is Cs(Rn)Cs(Rn) and u/δs|Ωu/δs|Ω is CαCα up to the boundary ∂Ω   for some α∈(0,1)α(0,1), where δ(x)=dist(x,∂Ω)δ(x)=dist(x,Ω). For this, we develop a fractional analog of the Krylov boundary Harnack method.  相似文献   

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We show that for each p∈(0,1]p(0,1] there exists a separable p  -Banach space GpGp of almost universal disposition, that is, having the following extension property: for each ε>0ε>0 and each isometric embedding g:X→Yg:XY, where Y is a finite-dimensional p-Banach space and X   is a subspace of GpGp, there is an ε  -isometry f:Y→Gpf:YGp such that x=f(g(x))x=f(g(x)) for all x∈XxX.  相似文献   

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We show that an n-homogeneous polynomial P   on the Fourier algebra A(G)A(G) of a locally compact group G   can be represented in the form P(f)=〈T,fnP(f)=T,fn(f∈A(G))(fA(G)) for some T   in the group von Neumann algebra VN(G)VN(G) of G if and only if it is orthogonally additive and completely bounded.  相似文献   

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Given a metric continuum X, we consider the following hyperspaces of X  : 2X2X, Cn(X)Cn(X) and Fn(X)Fn(X) (n∈NnN). Let F1(X)={{x}:x∈X}F1(X)={{x}:xX}. A hyperspace K(X)K(X) of X   is said to be rigid provided that for every homeomorphism h:K(X)→K(X)h:K(X)K(X) we have that h(F1(X))=F1(X)h(F1(X))=F1(X). In this paper we study under which conditions a continuum X   has a rigid hyperspace Fn(X)Fn(X).  相似文献   

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Let FF be an infinite field with characteristic not equal to two. For a graph G=(V,E)G=(V,E) with V={1,…,n}V={1,,n}, let S(G;F)S(G;F) be the set of all symmetric n×nn×n matrices A=[ai,j]A=[ai,j] over FF with ai,j≠0ai,j0, i≠jij if and only if ij∈EijE. We show that if G is the complement of a partial k  -tree and m?k+2m?k+2, then for all nonsingular symmetric m×mm×m matrices K   over FF, there exists an m×nm×n matrix U   such that UTKU∈S(G;F)UTKUS(G;F). As a corollary we obtain that, if k+2?m?nk+2?m?n and G is the complement of a partial k-tree, then for any two nonnegative integers p and q   with p+q=mp+q=m, there exists a matrix in S(G;R)S(G;R) with p positive and q negative eigenvalues.  相似文献   

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In this paper the question of finding infinitely many solutions to the problem −Δu+a(x)u=|u|p−2uΔu+a(x)u=|u|p2u, in RNRN, u∈H1(RN)uH1(RN), is considered when N≥2N2, p∈(2,2N/(N−2))p(2,2N/(N2)), and the potential a(x)a(x) is a positive function which is not required to enjoy symmetry properties. Assuming that a(x)a(x) satisfies a suitable “slow decay at infinity” condition and, moreover, that its graph has some “dips”, we prove that the problem admits either infinitely many nodal solutions or infinitely many constant sign solutions. The proof method is purely variational and allows to describe the shape of the solutions.  相似文献   

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Roe algebras are C?C?-algebras built using large scale (or ‘coarse’) aspects of a metric space (X,d)(X,d). In the special case that X=ΓX=Γ is a finitely generated group and d   is a word metric, the simplest Roe algebra associated to (Γ,d)(Γ,d) is isomorphic to the crossed product C?C?-algebra l(Γ)?rΓl(Γ)?rΓ.  相似文献   

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A new proof is given for the statement: For an irreducible, infinite Coxeter group (W,S)(W,S) and w∈WwW, if wSw-1=SwSw-1=S, then w=1w=1 (the identity element of W).  相似文献   

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