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1.
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For each integer n 2, let be the index of composition of n, where . For convenience, we write (1)=(1)=1. We obtain sharp estimates for and , as well as for and . Finally we study the sum of running over shifted primes.Research supported in part by a grant from NSERC.Research supported by the Applied Number Theory Research Group of the Hungarian Academy of Science and by a grant from OTKA.  相似文献   

3.
Z d — k=(k 1, ...,k d) k j,d1.d- (8), . . a k s m= a k s, >0 N, min (m 1,...,m d)N, ¦s ms¦. , , >0 N, min (m 1,...,m d)N min (n 1,...,n d)N, ¦s ms n. . , (8) , >0 N, max (b 1,...,b d) N, mZ d , m1, ¦s(b, m)¦ where   相似文献   

4.
Q (.. , L). Q . P(Sr(2)) — 2 (S r(2) (r — ). , M(P(S r(m=sup{t(·)t(·)1:t P(S r(2)),t 0}. , /4+(1)M(P(S r(2)))/r 215/17+(1)(r+). (Q), Q L.  相似文献   

5.
One-to-one random mappings of the set 1, 2,..., n onto itself are considered. Limit theorems are proved for the quantities i, 0in, max i, min i, where i is the number of 0in components of the vector ( 1, 2,..., n) which are equal to i, 0< i< n, and ar is the number of components of dimension r of the random mapping.Translated from Matematicheskle Zametki, Vol. 23, No. 6, pp. 895–898, June, 1978.The author is grateful to V. P. Chistyakov and V. E. Stepanov for many useful remarks.  相似文献   

6.
Let (itk) (s) denote thek-th derivative of the Riemann Zeta-function,s=+it, ,t real numbers,k1 rational integers. Using ideas fromT. C. Titchmarsh and from a paper ofR. Spira, lower bounds are derived for |(itk)(s)|, |(itk)(1-s) for >1 and some infinitely many, sufficiently large values oft. Further let be an algebraic number of degreen and heightH; then a lower bound for |(itk)(its)|, dependent onn, H, k is established for alln,H1,k3, 2+7k/4 and all realt.  相似文献   

7.
Brugesser and Mani proved that the boundary-complex of a convex polytope can be shelled. This result lead to McMullen's proof of the Upper-bound-conjecture. We show that the shellability of complexes has a close connection to the theory of stellar operations. Several results on special shelling procedures and on non-shellable complexes are obtained.  相似文献   

8.
In this paper we examine for which Witt classes ,..., n over a number field or a function fieldF there exist a finite extensionL/F and 2,..., n L* such thatT L/F ()=1 andTr L/F (i)=i fori=2,...n.  相似文献   

9.
Arató  N.  Márkus  L. 《Analysis Mathematica》1986,12(4):307-312
Lu(t)+(u,F)g(t)=f(t), tS. , ( F, g). .

The authors wish to thank Professor Yu. A. Rozanov for his help and discussions.  相似文献   

10.
Empirical Bayes (EB) estimation of the parameter vector =(,2) in a multiple linear regression modelY=X+ is considered, where is the vector of regression coefficient, N(0,2 I) and 2 is unknown. In this paper, we have constructed the EB estimators of by using the kernel estimation of multivariate density function and its partial derivatives. Under suitable conditions it is shown that the convergence rates of the EB estimators areO(n -(k-1)(k-2)/k(2k+p+1)), where the natural numberk3, 1/3<<1, andp is the dimension of vector .The project is supported by the National Natural Science Foundation of China.  相似文献   

11.
A new discrete modulus of continuity is introduced for functions of boundedp-fluctuation, and direct and converse theorems are proved on the approximation of these functions by polynomials with respect to multiplicative systems. Sufficient conditions for the convergence of Fourier series with respect to multiplicative systems are also obtained and these are the best possible in a certain sense.

. 60-  相似文献   

12.
X(Y) f -:X(Y)={fM(×): fX(Y)=f(x,.)YX< . =(0, ), M (×) — , ×, X, Y, Z— . X(Y) Z(×).  相似文献   

13.
Alberto Marcone 《Order》2001,18(4):339-347
We pursue the fine analysis of the quasi-orderings and on the power set of a quasi-ordering (Q,). We set X Y if every xX is majorized in by some yY, and X Y if every yY is minorized in by some xX. We show that both these quasi-orderings are -wqo if and only if the original quasi-ordering is ( )-wqo. For this holds also restricted to finite subsets, thus providing an example of a finitary operation on quasi-orderings which does not preserve wqo but preserves bqo.  相似文献   

14.
In this paper, we study the dynamics of a differential inclusion built upon a nonsmooth, not necessarily convex, constrained minimization problem in finite-dimensional spaces. In particular, we are interested in the investigation of the asymptotic behavior of the trajectories of the dynamical system represented by the differential inclusion. Under suitable assumptions on the constraint set and the two involved functions (one defining the constraint set, the other representing the functional to be minimized), it is proved that all the trajectories converge to the set of the constrained critical points. We present also a large class of constraint sets satisfying our assumptions. As a simple consequence, in the case of a smooth convex minimization problem, we have that any trajectory converges to the set of minimizers.Research partially supported by the research project CNR-GNAMPA Mathematical Methods for Control Theory and supported in part by the European Communitys Human Potential Program under Contract HPRN-CT-2002-00281, Evolution Equations.  相似文献   

15.
Summary Previsible (or predictable) stochastic processes are defined for any filtration over a probability space (Dellacherie and Meyer (1978), IV. 61). This technical definition gives previsible processes certain predictability properties such as not being able to oscillate in unison with martingale differentials. Thus previsibility has become one essential ingredient in The General Theory of Stochastic Processes.We show that previsible sets for Keisler's (1984) special hyperfinite filtration are given both combinatorially and by a left filtration. Keisler's scheme has many other interesting features.Our main technical tool is an extension of Henson's (1979) analysis of analytic sets and the standard part map.  相似文献   

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17.
N- (p, q) (1 pN-, L p - L q -. , , , L L q - , , .  相似文献   

18.
(, ) — R m ×R n . f R m ×R n fp,q, f L p (R m) x y, Lq(Rn). ׃ q,r cƒ p,r , ׃ R m ×R n , , , q r . , ( ¦¦) K 0 (y); p, g r , K 0.  相似文献   

19.
Filevich  P. V.  Sheremeta  M. N. 《Mathematical Notes》2003,74(1-2):110-122
For entire Dirichlet series, we establish conditions on its coefficients and exponents under which the logarithms of the maximal term and of the maximum of the modulus are regularly varying functions of order [1, + ) and the central exponent is a regularly varying function of order – 1.  相似文献   

20.
Spaces called rectangular spaces were introduced in [5] as incidence spaces (P,G) whose set of linesG is equipped with an equivalence relation and whose set of point pairs P2 is equipped with a congruence relation , such that a number of compatibility conditions are satisfied. In this paper we consider isomorphisms, automorphisms, and motions on the rectangular spaces treated in [5]. By an isomorphism of two rectangular spaces (P,G, , ) and (P,G, , ) we mean a bijection of the point setP onto P which maps parallel lines onto parallel lines and congruent points onto congruent points. In the following, we consider only rectangular spaces of characteristic 2 or of dimension two. According to [5] these spaces can be embedded into euclidean spaces. In case (P,G, , ) is a finite dimensional rectangular space, then every congruence preserving bijection ofP onto P is in fact an isomorphism from (P,G, , ) onto (P,G, , ) (see (2.4)). We then concern ourselves with the extension of isomorphisms. Our most important result is the theorem which states that any isomorphism of two rectangular spaces can be uniquely extended to an isomorphism of the associated euclidean spaces (see (3.2)). As a consequence the automorphisms of a rectangular space (P,G, , ) are precisely the restrictions (onP) of the automorphisms of the associated euclidean space which fixP as a whole (see (3.3)). Finally we consider the motions of a rectangular space (P,G, , ). By a motion of(P. G,, ) we mean a bijection ofP which maps lines onto lines, preserves parallelism and satisfies the condition((x), (y)) (x,y) for allx, y P. We show that every motion of a rectangular space can be extended to a motion of the associated euclidean space (see (4.2)). Thus the motions of a rectangular space (P,G, , ) are seen to be the restrictions of the motions of the associated euclidean space which mapP into itself (see (4.3)). This yields an explicit representation of the motions of any rectangular plane (see (4.4)).

Herrn Professor Burau zum 85. Geburtstag gewidmet  相似文献   

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