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(C, ). , . 0<<1. 1) - ( k ), k =a k , (C, ), . 2) , , (C, ) ; k = =¦a k ¦.  相似文献   

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Summary We discuss in this paper a non-homogeneous Poisson process A driven by an almost periodic intensity function. We give the stationary version A * and the Palm version A 0 corresponding to A *. Let (T i ,i) be the inter-point distance sequence in A and (T i 0 ,i) in A 0. We prove that forj, the sequence (T i+j,i) converges in distribution to (T i 0 ,i). If the intensity function is periodic then the convergence is in variation.  相似文献   

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Let m be an integer with m3. Let K and K be perfect fields of characteristic p and p such that (p,m)=1 and (p,m)=1, respectively. Moreover let A and A be algebraic function fields over K and K defined by xm+ym=a(0, ak) and xm+ym=a(a0 ak), respectively. Put g=(m–1)(m–2)/2. Denote by M(K,p,a) and M(K,p,a) the Hasse-Witt matrices of A and A with respect to the canonical bases of holomorphic differentials. Then we show that if p+p0(mod.m) then rank M(K,p,a)+rank M(K,p,a)=g and if pp1 (mod.m) then rank M(K,p,a)=rank M(K,p,a).  相似文献   

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1<q<2 L:= n=1 1/q n=1/q–1. [0,1] n()=1, A n:= i=1 n–1 i(x)/qi+1/n x n(x)=0, n>. , = n=1 n(x)/qn. F: [0,L]R , F(x)= n=1 n(x)an, n=1 ¦a n¦<. [0,L]. q(1,2), . , q(1, 2), . .  相似文献   

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— [0,1] ,E — - e=1 [0,1]. I — E =1, E=L 2 x e =xL 2 x E.

This work was prepared when the second author was a visiting professor of the CNR at the University of Firenze. He was supported by the Soros International Fund.  相似文献   

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p- . E R n -, f () p(R n)., ER n 2nq 0, E— - q 0(q 0-1). : q0>2 n1 E R n 2nq 0, p- p<0. , f-[-, ]n, f A p(R n) , p([-, ]n) (1 << ).  相似文献   

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N- (p, q) (1 pN-, L p - L q -. , , , L L q - , , .  相似文献   

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, , , . .

Dedicated to Professors K. Tandori and L. Leindler on the occasion of their anniversaries

This work was completed in support of the Russian Foundation of Fundamental Research (Project # 96-01-00094) and of the International Scientific Foundation (Grant # NCI-300).  相似文献   

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This paper considers Markov chains on a locally compact separable metricspace, which have an invariant probability measure but with no otherassumption on the transition kernel. Within this context, the limit providedby several ergodic theorems is explicitly identified in terms of the limitof the expected occupation measures. We also extend Yosidasergodic decomposition for Feller-like kernels to arbitrarykernels, and present ergodic results for empirical occupation measures, aswell as for additive-noise systems.  相似文献   

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f p- , l p . p=1 . . p - , f -.  相似文献   

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Summary This paper gives a flexible approach to proving the Central Limit Theorem (C.L.T.) for triangular arrays of dependent random variables (r.v.s) which satisfy a weak mixing condition called -mixing. Roughly speaking, an array of real r.v.s is said to be -mixing if linear combinations of its past and future are asymptotically independent. All the usual mixing conditions (such as strong mixing, absolute regularity, uniform mixing, -mixing and -mixing) are special cases of -mixing. Linear processes are shown to be -mixing under weak conditions. The main result makes no assumption of stationarity. A secondary result generalises a C.L.T. that Rosenblatt gave for strong mixing samples which are nearly second order stationary.  相似文献   

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We prove that on a closed, smooth, convex surface of revolution , whose poles are not flattening points, there exists only a countable set of parallels n. Each of these parallels cuts surface into two parts so that one of the parts, , admits nontrivial, infinitesimal bendings in the process of which all the points of its boundary n are displaced on a preassigned, conic sleeve K that is coaxial with the surface. The sequence of such parallels n converges to parallel *, which has the following properties: 1) the tangent cone to surface along * is orthogonal to sleeve K; 2) surface , cut off from surface by parallel *, has rigidity of first order in the indicated class of bendings.Translated from Ukrainskii Geometricheskii Sbornik, No. 33, pp. 3–8, 1990.  相似文献   

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. . . . , L p[0, l], 1 >p <, .  相似文献   

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