Results 201 to 210 of about 71,749,598 (257)
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Thin flow element and the problem of ill‐conditioning

International Journal for Numerical and Analytical Methods in Geomechanics, 1989
AbstractThe problem of ill‐conditioning in anisotropic and heterogeneous flow regions using plane and axisymmetric conditions is studied. A new concept, conditioning ratio, which covers all the possible factors significantly affecting the problem of ill‐conditioning (e.g. aspect ratio, heterogeneity and anisotropy) is proposed.
Valliappan, S.   +2 more
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The elements of customer satisfaction model in Serbian conditions

International Journal of Services Technology and Management, 2012
The objective of this paper is to present the research results in modelling the process for providing satisfaction of company's customers and their requirements - the key elements of the model which is the final result of the research. This model implies a process approach and acceptable marketing research in the beginning, as well as appropriate ...
Dragan Cockalo   +4 more
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Rings with No Nilpotent Elements and with the Maximum Condition on Annihilators

Canadian Mathematical Bulletin, 1974
Rings (all of which are assumed to be associative) with no non-zero nilpotent elements will be called reduced rings; R is a reduced ring if and only if x2=0 implies x=0, for all x∈R. In 2. we prove that the following conditions on an annihilator ideal I of a reduced ring are equivalent: I is a maximal annihilator, I is prime, I is a minimal prime, I is
Cornish, W. H., Stewart, P. N.
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On conditions of existence of sums of functions of conditioned random elements

Journal of Mathematical Sciences, 2005
Let \((\Omega,\mathcal S,\mathbb P)\) and \((\mathcal F,\mathcal B)\) be probability and measurable spaces, respectively. Any \((\mathcal B,\mathcal S)\)-measurable mapping of a set \(\Omega\) into a set \(\mathcal F\) is called a random element. Let \(w_1,w_2,\dots,w_N\) be random elements given on a probability space \((\Omega_1,{\mathcal S}_1 ...
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On Finite-Dimensional Distributions of a Random Element Conditioned by the Sum of Random Elements*

Journal of Mathematical Sciences, 2013
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Parabolicity and Hyperbolicity Conditions for Boundary Elements of Surfaces

Mathematical Notes, 2001
The author proves some criteria for parabolicity and hyperbolicity of simple ends of surfaces without boundary. These criteria are formulated by means of the capacity distance. As is noted at the end of this paper the parabolicity and hyperbolicity remain invariant under \((r, \alpha)\)-quasiisometries.
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A new associative conditioning element for consummatory classical conditioning

1991
This thesis documents the development, operation, and performance of a new nonlinear analog system designed to exhibit a wide range of (mainly) consummatory classical conditioning behaviour. This new system, referred to hereafter as the Associative Conditioning Element (ACE), may be categorised as a functioning Artificial Neural Network (ANN) element ...
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General conditions for the decomposition of state holding elements

Proceedings Second International Symposium on Advanced Research in Asynchronous Circuits and Systems, 2002
A fundamental problem in the design of speed-independent asynchronous circuits is the decomposition or splitting up of high-fanin operators into two or more lower-fanin operators. In this paper, we develop general techniques to decided whether a particular decomposition of an arbitrary state-holding or combinational element into two elements with an ...
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Interpolated Boundary Conditions in the Finite Element Method

SIAM Journal on Numerical Analysis, 1975
This paper shows that the technique introduced in Berger, Scott and Strang [2] can achieve optimal accuracy if the approximating functions interpolate boundary conditions at the Lobatto quadrature points for each element edge on the boundary. No modification of the energy form is required.
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