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We introduce (n+1)(n+1)-preprojective algebras of algebras of global dimension nn. We show that if an algebra is nn-representation-finite then its (n+1)(n+1)-preprojective algebra is self-injective. In this situation, we show that the stable module category of the (n+1)(n+1)-preprojective algebra is (n+1)(n+1)-Calabi–Yau, and, more precisely, it is the (n+1)(n+1)-Amiot cluster category of the stable nn-Auslander algebra of the original algebra. In particular this stable category contains an (n+1)(n+1)-cluster tilting object. We show that even if the (n+1)(n+1)-preprojective algebra is not self-injective, under certain assumptions (which are always satisfied for n∈{1,2}n{1,2}) the results above still hold for the stable category of Cohen–Macaulay modules.  相似文献   

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This paper introduces a notion of regularity of t=-∞t=- for the diffusion (or heat) equation and establishes a necessary and sufficient condition for the existence of a unique bounded solution to the first boundary value problem for the diffusion equation in a general domain Ω⊂RN+1ΩRN+1 which extends up to t=-∞t=-.  相似文献   

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In this paper, the approximation characteristic of a diagonal matrix in probabilistic and average case settings is investigated. And the asymptotic degree of the probabilistic linear (n,δ)(n,δ)-width and pp-average linear nn-width of diagonal matrix MM are determined.  相似文献   

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Let ηη be a non-zero scalar. In this paper, we investigate a bijective map ?? between two von Neumann algebras, one of which has no central abelian projections, satisfying ?(AB+ηBA)=?(A)?(B)+η?(B)?(A)?(AB+ηBA)=?(A)?(B)+η?(B)?(A) for all A,BA,B in the domain. It is showed that ?? is a linear *-isomorphism if ηη is not real and ?? is a sum of a linear *-isomorphism and a conjugate linear *-isomorphism if ηη is real.  相似文献   

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For ΩΩ, an open bounded subset of RNRN with smooth boundary and 1<p<∞1<p<, we establish W1,p(Ω)W1,p(Ω)a priori bounds and prove the compactness of solution sets to differential inequalities of the form
|divA(x,∇u)|≤F(x,u,∇u),|divA(x,u)|F(x,u,u),
which are bounded in L(Ω)L(Ω). The main point in this work is that the nonlinear term FF may depend on ∇uu and may grow as fast as a power of order pp in this variable. Such growth conditions have been used extensively in the study of boundary value problems for nonlinear ordinary differential equations and are known as Bernstein–Nagumo growth conditions. In addition, we use these results to establish a sub-supersolution theorem.  相似文献   

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In this paper, a new monotonicity, MM-monotonicity, is introduced, and the resolvent operator of an MM-monotone operator is proved to be single valued and Lipschitz continuous. With the help of the resolvent operator, an equivalence between the variational inequality VI(C,F+G)(C,F+G) and the fixed point problem of a nonexpansive mapping is established. A proximal point algorithm is constructed to solve the fixed point problem, which is proved to have a global convergence under the condition that FF in the VI problem is strongly monotone and Lipschitz continuous. Furthermore, a convergent path Newton method, which is based on the assumption that the projection mapping C(⋅)C() is semismooth, is given for calculating εε-solutions to the sequence of fixed point problems, enabling the proximal point algorithm to be implementable.  相似文献   

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Let K   be a hypergroup with a Haar measure. The purpose of the present paper is to initiate a systematic approach to the study of the class of invariant complemented subspaces of L(K)L(K) and C0(K)C0(K), the class of left translation invariant w?w?-subalgebras of L(K)L(K) and finally the class of non-zero left translation invariant C?C?-subalgebras of C0(K)C0(K) in the hypergroup context with the goal of finding some relations between these function spaces. Among other results, we construct two correspondences: one, between closed Weil subhypergroups and certain left translation invariant w?w?-subalgebras of L(K)L(K), and another, between compact subhypergroups and a specific subclass of the class of left translation invariant C?C?-subalgebras of C0(K)C0(K). By the help of these two characterizations, we extract some results about invariant complemented subspaces of L(K)L(K) and C0(K)C0(K).  相似文献   

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