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Modeling One-Dimensional Systems

1979
In this section, a model for predicting properties of premixed propagating methane—air and coal—air flames is described. This model is formulated to treat the general case of propagation in multiphase systems containing finely divided particles or droplets; however, the application emphasized herein is for pulverized coal—air systems.
L. Douglas Smoot, Philip J. Smith
openaire   +1 more source

One-dimensional viscoelastic cell motility models

Mathematical Biosciences, 2011
In this paper we consider a class of one-dimensional cell motility models with increasing complexities beginning with a kinematic model and ending with a model based on viscoelastic theory. In many of these models, we establish the existence of traveling cell solutions and show numerically that the solutions of the time-dependent problem converge to ...
Zheltukhin, Sergey, Lui, Roger
openaire   +3 more sources

One-dimensional models for superionic conductors

The Journal of Chemical Physics, 1976
Three one-dimensional models, interstitialcylike, vacancylike, and interstitiallike, are constructed to study properties of superionic conductors. Potential energy curves along the diffusion path due to all ions other than the conducting species are simulated by (V0/2) [1−cos(2πx/a)], where a is the lattice constant.
J. C. Wang, David F. Pickett
openaire   +1 more source

One-Dimensional Model Problems

1989
In the previous chapter, the basic ideas of quantum mechanics were introduced by means of several postulates. It was also seen that there are several possible equivalent ways of viewing quantum mechanics, commonly referred to as the Schrodinger picture, the Heisenberg picture, and the interaction picture.
openaire   +1 more source

One-dimensional modelling of ‘verso’ laser cleaning

Journal of Modern Optics, 2006
In this paper we present a one-dimensional model describing the verso laser cleaning technique, already experimentally tested, for particle removal from a substrate. The equation for displacement is treated for a one-dimensional case, and the temporal behaviour of the rear surface deformation is determined.
BLOISI F   +3 more
openaire   +3 more sources

One-Dimensional Hubbard Models

1997
In this chapter we present exact results for one-dimensional modified Hubbard models with different dispersion relations. If not specified otherwise, we use the lattice constant a as the unit length from now on: a = 1.
openaire   +1 more source

One-Dimensional TLM Models

2009
This chapter contains sections titled: TLM Model of a Lossy Transmission Line TLM Models for One-Dimensional Electromagnetic Problems Study of Dispersive Effects in One-Dimensional TLM Models This chapter contains sections titled: References ]]>
openaire   +1 more source

Finite-temperature transport in one-dimensional quantum lattice models

Reviews of Modern Physics, 2021
Fabian Heidrich-Meisner   +2 more
exaly  

One-Dimensional Models

2019
Takeyoshi Nagai   +4 more
openaire   +1 more source

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