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61.
In this paper we study integral operators of the form
1 + ... + m = n. We obtain the L
p
(w) boundedness for them, and a weighted (1, 1) inequality for weights w in A
p
satisfying that there exists c 1 such that w(a
i
x) cw(x) for a.e. x n, 1 i m. Moreover, we prove
for a wide family of functions f L
(n).Partially supported by CONICET, Agencia Cordoba Ciencia and SECYT-UNC. 相似文献
62.
Here we discuss a sequence of Lagrangians and corresponding Euler–Lagrange equations and point out some interesting properties that this particular sequence holds. This is an extension on recent results obtained on sequences of differential equations to Lagrangians as it leads to differential equations on the application of the Variational Principle. 相似文献
63.
Christian Bär 《Annals of Global Analysis and Geometry》2009,36(1):67-79
We extend several classical eigenvalue estimates for Dirac operators on compact manifolds to noncompact, even incomplete manifolds.
This includes Friedrich’s estimate for manifolds with positive scalar curvature as well as the author’s estimate on surfaces.
相似文献
64.
Michael Taylor 《Journal of Geometric Analysis》2009,19(1):137-190
We develop the theory of the “local” Hardy space
and John-Nirenberg space
when M is a Riemannian manifold with bounded geometry, building on the classic work of Fefferman-Stein and subsequent material,
particularly of Goldberg and Ionescu. Results include
–
duality, L
p
estimates on an appropriate variant of the sharp maximal function,
and bmo-Sobolev spaces, and action of a natural class of pseudodifferential operators, including a natural class of functions
of the Laplace operator, in a setting that unifies these results with results on L
p
-Sobolev spaces. We apply results on these topics to some interpolation theorems, motivated in part by the search for dispersive
estimates for wave equations.
相似文献
65.
The numerical solution of linear elliptic partial differential equations most often involves a finite element or finite difference
discretization. To preserve sparsity, the arising system is normally solved using an iterative solution method, commonly a
preconditioned conjugate gradient method. Preconditioning is a crucial part of such a solution process. In order to enable
the solution of very large-scale systems, it is desirable that the total computational cost will be of optimal order, i.e.
proportional to the degrees of freedom of the approximation used, which also induces mesh independent convergence of the iteration.
This paper surveys the equivalent operator approach, which has proven to provide an efficient general framework to construct
such preconditioners. Hereby one first approximates the given differential operator by some simpler differential operator,
and then chooses as preconditioner the discretization of this operator for the same mesh. In this survey we give a uniform
presentation of this approach, including theoretical foundation and several practically important applications for both symmetric
and nonsymmetric equations and systems, and some nonlinear examples in the context of Newton linearization.
Dedicated to the memory of Gene Golub for his friendly manner and for his broad interest and significant impact on numerical
analysis. 相似文献
66.
67.
68.
Ronald R. Yager 《Fuzzy Optimization and Decision Making》2007,6(3):199-219
Our interest is with the fusion of information which has an ordinal structure. Information fusion in this environment requires
the availability of ordinal aggregation operations. Basic ordinal operations are first introduced. Next we investigate conjunctive
and disjunction aggregations of ordinal information. The idea of a pseudo-log in the ordinal environment is presented. We
discuss the introduction of a zero like point on an ordinal scale along with the related ideas of bipolarity (positive and
negative values) and uni-norm aggregation operators. We introduce mean like aggregation operators as well weighted averages
on a ordinal scale. The problem of selecting between ordinal models is considered. 相似文献
69.
Jean-Philippe Chancelier Marouen Messaoud Agnès Sulem 《Mathematical Methods of Operations Research》2007,65(2):239-259
The aim of this paper is to solve the fixed point problems:
where
is a finite set, L is contractive and B is a nonexpansive operator and
where
and
are general control sets, the operators L
w
are contractive and operators B
z
are nonexpansive. For these two problems, we give conditions which imply existence and uniqueness of a solution and provide
a policy iteration algorithm which converges to the solution. The proofs are slightly different for the two problems since
the set of controls is finite for (1) while it is not necessary the case for problem (2). Equation (2) typically arises in
numerical analysis of quasi variational inequalities and variational inequalities associated to impulse or singular stochastic
control. 相似文献
70.
Pedro Ortega Salvador Consuelo Ramírez Torreblanca 《Journal of Mathematical Analysis and Applications》2007,336(1):593-607
We characterize the pairs of weights (u,v) such that the geometric mean operator G1, defined for positive functions f on (0,∞) by