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1.
LetF n be a Finsler space with metric functionF(x, y). M. Matsumoto [6] has defined a modified Finsler spaceF n * whose metric functionF *(x, y) is given byF *2 = = F2 + (Xi(x)yi)2, whereX i are the components of a covariant vector which is a function of coordintae only. Since a concurrent vector is a function of coordinate only, Matsumoto and Eguchi [9] have studied various properties of the modified Finsler spaceF n * under the assumption thatX i are the components of a concurrent vector field inF n. In this paper we shall introduce the concept of semi-parallel vector field inF n and study the properties of modified Finsler spaceF n * .  相似文献   

2.
Let X be a real uniformly convex Banach space and C a nonempty closed convex nonexpansive retract of X with P as a nonexpansive retraction. Let T 1, T 2: CX be two uniformly L-Lipschitzian, generalized asymptotically quasi-nonexpansive non-self-mappings of C satisfying condition A′ with sequences {k n (i) } and {δ n (i) } ? [1, ∞),, i = 1, 2, respectively such that Σ n=1 (k n (i) ? 1) < ∞, Σ n=1 (i) δ n (i) < ∞, and F = F(T 1) ∩ F(T 2) ≠ ?. For an arbitrary x 1C, let {x n } be the sequence in C defined by $$ \begin{gathered} y_n = P\left( {\left( {1 - \beta _n - \gamma _n } \right)x_n + \beta _n T_2 \left( {PT_2 } \right)^{n - 1} x_n + \gamma _n v_n } \right), \hfill \\ x_{n + 1} = P\left( {\left( {1 - \alpha _n - \lambda _n } \right)y_n + \alpha _n T_1 \left( {PT_1 } \right)^{n - 1} x_n + \lambda _n u_n } \right), n \geqslant 1, \hfill \\ \end{gathered} $$ where {α n }, {β n }, {γ n } and {λ n } are appropriate real sequences in [0, 1) such that Σ n=1 ] γ n < ∞, Σ n=1 λ n < ∞, and {u n }, }v n } are bounded sequences in C. Then {x n } and {y n } converge strongly to a common fixed point of T 1 and T 2 under suitable conditions.  相似文献   

3.
Denote by Mat k,l (F) the algebraM n (F) of matrices of order n = k + l with the grading (Mat k,l 0 (F),Mat k,l 1 (F)), where Mat k,l 0 (F) admits the basis $$ \{ e_{ij} ,i \leqslant k,j \leqslant k\} \cup \{ e_{ij} ,i > k,j > k\} $$ and Mat k,l 1 (F) admits the basis $$ \{ e_{ij} ,i \leqslant k,j > k\} \cup \{ e_{ij} ,i > k,j \geqslant k\} . $$ . Denote byM k,l (F) the Grassmann envelope of the superalgebra Mat k,l (F). In the paper, bases of the graded identities of the superalgebras Mat1,2(F) and M 1,2(F) are described.  相似文献   

4.
Let X be an RD-space. In this paper, the authors establish the boundedness of the commutator Tbf = bTf-T(bf) on Lp , p∈(1,∞), where T is a Calderón-Zygmund operator related to the admissible function ρ and b∈BMOθ(X)BMO(X). Moreover, they prove that Tb is bounded from the Hardy space H1ρ(X) into the weak Lebesgue space L1weak(X). This can be used to deal with the Schrdinger operators and Schrdinger type operators on the Euclidean space Rn and the sub-Laplace Schrdinger operators on the stratified Lie group G.  相似文献   

5.
We consider a centered Gaussian random field X = {X t : tT} with values in a Banach space $\mathbb{B}$ defined on a parametric set T equal to ? m or ? m . It is supposed that the distribution of X t is independent of t. We consider the asymptotic behavior of closed convex hulls W n = conv{X t : tT n}, where (T n ) is an increasing sequence of subsets of T. We show that under some conditions of weak dependence for the random field under consideration and some sequence (b n ) n≥1 with probability 1, (in the sense of Hausdorff distance), where the limit set is the concentration ellipsoid of . The asymptotic behavior of the mathematical expectations Ef(W n ), where f is some function, is also studied.  相似文献   

6.
The Turán density π(F) of a family F of k-graphs is the limit as n → ∞ of the maximum edge density of an F-free k-graph on n vertices. Let Π (k) consist of all possible Turán densities and let Π fin (k) ? Π (k) be the set of Turán densities of finite k-graph families. Here we prove that Π fin (k) contains every density obtained from an arbitrary finite construction by optimally blowing it up and using recursion inside the specified set of parts. As an application, we show that Π fin (k) contains an irrational number for each k ≥ 3. Also, we show that Π (k) has cardinality of the continuum. In particular, Π (k) ≠ Π fin (k) .  相似文献   

7.
Control processes of the form \(\dot x - A(t) x = B(t) u(t)\) , which are normal with respect to the unit ballB p′, r′ of the control spaceL p′([τ, T]),l m r ′ are characterized in terms ofH(t)=X(T)X ?1(t),B(t),X(t) any fundamental matrix solution of \(\dot x - A(t)x = 0\) , and directly in terms ofA, B, when bothA andB are independent oft.  相似文献   

8.
For k ≥ 2, the k-generalized Fibonacci sequence (F n (k) ) n is defined by the initial values 0, 0, …, 0,1 (k terms) and such that each term afterwards is the sum of the k preceding terms. In 2005, Noe and Post conjectured that the only solutions of Diophantine equation F m (k) = F n (?) , with ? > k > 1, n > ? + 1, m > k + 1 are $(m,n,\ell ,k) = (7,6,3,2)and(12,11,7,3)$ . In this paper, we confirm this conjecture.  相似文献   

9.
We consider groups Γ generated by inversions in a pair of asymptotic complex hyperplanes in complex hyperbolic spaceH ? n . We show that there exists a Γ-invariant real hypersurfaceF ?H ? n such that the Dirichlet fundamental polyhedron for Γ centered at z0 has two sides (resp. infinitely many sides) if and only ifz 0F (resp.z 0 ?F). The Dirichlet regions are determined explicitly in terms of coordinates on Γ-invariant horospheres and the geometry ofH ? n is developed in terms of these horospherical coordinates.  相似文献   

10.
We consider a class of boundary value problems of the second order difference equation $$\Delta(r_{i-1}\Delta y_{i-1})-b_{i}y_{i}+\lambda a_{i}y_{i}=0,\quad 1\le i\le n,\ y_{0}=\alpha y_{n},\ y_{n+1}=\alpha y_{1}.$$ The class of problems considered includes those with antiperiodic, Dirichlet, and periodic boundary conditions. We focus on the structure of eigenvalues of this class of problems and comparisons of all eigenvalues as the coefficients {a i } i=1 n ,{b i } i=1 n , and {r i } i=0 n change.  相似文献   

11.
This note mainly aims to improve the inequality, proposed by Böttcher and Wenzel, giving the upper bound of the Frobenius norm of the commutator of two particular matrices in ? n×n . We first propose a new upper bound on basis of the Böttcher and Wenzel’s inequality. Motivated by the method used, the inequality ‖XY ? XY F 2 ≤ 2‖X F 2 Y F 2 is finally improved into $$ \left\| {XY - YX} \right\|_F^2 \leqslant 2\left\| X \right\|_F^2 \left\| Y \right\|_F^2 - 2[tr(X^T Y)]^2 . $$ . In addition, a further improvement is made.  相似文献   

12.
The existence and representations of some generalized inverses, includingA T, * (2) ,A T, * (1,2) ,A T, * (2,3) ,A *,S (2) ,A *,S (1,2) andA *,S (2,4) , are showed. As applications, the perturbation theory for the generalized inverseA T,S (2) and the perturbation bound for unique solution of the general restricted systemAx=b (dim (AT)=dimT,bAT andxT) are studied. Moreover, a characterization and representation of the generalized inverseA T, * Emphasis>(2) is obtained.  相似文献   

13.
On the multidimensional classW 0 r H ω (n) of continuous periodic functionsF with therth derivativeD r F from $$H_\omega ^{(n)} = \left\{ {f \in C| |f(x) - f(y)| \leqslant \sum\limits_{i = 1}^n {\omega _i } (|x_i - y_i |)\forall x, y \in \mathbb{R}^n } \right\}$$ (where the ω i (x i ) are the convex moduli of continuity) and zero mean with respect to each variable, we obtain the exact value of $$M_r (\omega ) = \mathop {\sup }\limits_{F \in W_0^r H_\omega ^{(n)} } \left\| F \right\|c$$ .  相似文献   

14.
Let Pk denote the projection of L2(R R ) onto the kth eigenspace of the operator (-δ+?x?2 andS N α =(1/A N α k N =0A N?k α P k . We study the multiplier transformT N α for the Weyl transform W defined byW(T N αf )=S n αW(f) . Applications to Laguerre expansions are given.  相似文献   

15.
Jackson-type inequalities and widths of function classes in L 2   总被引:1,自引:0,他引:1  
The sharp Jackson-type inequalities obtained by Taikov in the space L 2 and containing the best approximation and the modulus of continuity of first order are generalized to moduli of continuity of kth order (k = 2, 3, ... ). We also obtain exact values of the n-widths of the function classes F(k, r, Φ) and F k r (h), which are a generalization of the classes F(1, r, Φ) and F k r (h) studied by Taikov.  相似文献   

16.
We prove that determinacy for all Boolean combinations of \({F_{\sigma \delta }}\) (Π 3 0 ) sets implies the consistency of second-order arithmetic and more. Indeed, it is equivalent to the statement saying that for every set X and every number n, there exists a β-model of Π n 1 -comprehension containing X. We prove this result by providing a careful level-by-level analysis of determinacy at the finite level of the difference hierarchy on \({F_{\sigma \delta }}\) (Π 3 0 ) sets in terms of both reverse mathematics, complexity and consistency strength. We show that, for n ≥ 1, determinacy for sets at the nth level in this difference hierarchy lies strictly between (in the reverse mathematical sense of logical implication) the existence of β-models of Π n+2 1 -comprehension containing any given set X, and the existence of β-models of Δ n+2 1 -comprehension containing any given set X. Thus the nth of these determinacy axioms lies strictly between Π n+2 1 -comprehension and Δ n+2 1 -comprehension in terms of consistency strength. The major new technical result on which these proof theoretic ones are based is a complexity theoretic one. The nth determinacy axiom implies closure under the operation taking a set X to the least Σ n+1 admissible containing X (for n = 1; this is due to Welch [9]).  相似文献   

17.
We considers-number sequences {s n (T)} n=1 of linear and continuous operatorsT on Banach spaces and prove product formulas for the operator ideals ? p,u (s) . Furthermore, we investigate the relationship between the eigenvalues of a Riesz operator and its Hilbert numbers.  相似文献   

18.
Let (F n ) n??0 be the Fibonacci sequence given by F n+2 = F n+1 + F n , for n ?? 0, where F 0 = 0 and F 1 = 1. There are several interesting identities involving this sequence such as F n 2 + F n+1 2 = F 2n+1, for all n ?? 0. In a very recent paper, Marques and Togbé proved that if F n s + F n+1 s is a Fibonacci number for all sufficiently large n, then s = 1 or 2. In this paper, we will prove, in particular, that if (G m ) m is a linear recurrence sequence (under weak assumptions) and G n s + ... + G n+k s ?? (G m ) m , for infinitely many positive integers n, then s is bounded by an effectively computable constant depending only on k and the parameters of G m .  相似文献   

19.
An algebraic permutation $\hat{A}\in S(N=n^{m})$ is the permutation of the N points of the finite torus ? n m , realized by a linear operator A∈SL(m,? n ). The statistical properties of algebraic permutations are quite different from those of random permutations of N points. For instance, the period length T(A) grows superexponentially with N for some (random) permutations A of N elements, whereas $T(\hat{A})$ is bounded by a power of N for algebraic permutations  $\hat{A}$ . The paper also contains a strange mean asymptotics formula for the number of points of the finite projective line P1(? n ) in terms of the zeta function.  相似文献   

20.
For a gap sequence of natural numbers {n k } k=1 , for a nondecreasing function φ: [0,+∞) → [0,+∞) such that φ(u) = o(u ln ln u) as u → ∞, and a modulus of continuity satisfying the condition (ln k)?1 = O(ω(n k ?1 )), we present an example of a function Fφ(L) ∩ H 1 ω with an almost everywhere divergent subsequence {S n k (F, x)} of the sequence of partial sums of the trigonometric Fourier series of the function F.  相似文献   

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