نتایج جستجو برای: laplace transform domain

تعداد نتایج: 516680  

2002
MARTIN BOHNER ALLAN PETERSON

We introduce the Laplace transform for an arbitrary time scale. Two particular choices of time scales, namely the reals and the integers, yield the concepts of the classical Laplace transform and of the classical Z-transform. Other choices of time scales yield new concepts of our Laplace transform, which can be applied to find solutions of higher order linear dynamic equations with constant coe...

Journal: :Journal of Mathematics and Statistics 2007

Journal: :Physica A: Statistical Mechanics and its Applications 2013

2006
Ivana Štajner-Papuga

Pseudo-Laplace transform is an important notion from pseudo-analysis’ framework that is often used in dealing with differential or integral equation. The (⊕, ̄)-Laplace transform considered here is a generalization of the pseudo-Laplace transform based on a special class of generalized pseudo-operations that need not be commutative nor associative. This pseudo-Laplace type transform has been use...

Journal: :journal of solid mechanics 0
r kumar department of mathematics, kurukshetra university , kurukshetra, haryana, india n sharma department of mathematics, mm university, mullana, ambala, haryana, india p lata department of basic and applied sciences, punjabi university, patiala, punjab, india

the present paper is concerned with  the investigation of disturbances in a homogeneous  transversely isotropic thermoelastic rotating  medium with two temperatures, in the presence of the combined effects of   hall currents and magnetic field due to thermomechanical sources. the formulation is applied to the thermoelasticity theories developed by green-naghdi theories of type-ii and type-iii. ...

2010
Hu Sheng Yan Li YangQuan Chen

It is known that the Laplace transform is frequently used to solve fractional-order differential equations. Unlike integer-order differential equations, fractional-order differential equations always lead to difficulties in calculating inversion of Laplace transforms. Motivated by finding an easy way to numerically solve the fractional-order differential equations, we investigated the validity ...

2014
SALVADOR SÁNCHEZ-PERALES

We consider the Laplace transform as a Henstock-Kurzweil integral. We give conditions for the existence, continuity and differentiability of the Laplace transform. A Riemann-Lebesgue Lemma is given, and it is proved that the Laplace transform of a convolution is the pointwise product of Laplace transforms.

2013
Thorsten Prustel Martin Meier-Schellersheim

We investigate the reversible diffusion-influenced reaction of an isolated pair in two space dimensions in the context of the area reactivity model. We compute the exact Green’s function in the Laplace domain for the initially unbound molecule. Furthermore, we calculate the exact expression for the Green’s function in the time domain by inverting the Laplace transform via the Bromwich contour i...

Journal: :Computers & Mathematics with Applications 2010
Martin Bohner Gusein Sh. Guseinov

Starting with a general definition of the Laplace transform on arbitrary time scales, we specify the Laplace transform on isolated time scales, prove several properties of the Laplace transform in this case, and establish a formula for the inverse Laplace transform. The concept of convolution is considered in more detail by proving the convolution theorem and a discrete analogue of the classica...

Journal: :journal of linear and topological algebra (jlta) 0
m matinfar science of mathematics faculty, department of mathematics, university of mazandaran, p.o.box 47416-95447, babolsar, iran a riahifar university of mazandaran

in this work, we conduct a comparative study among the combine laplace transform and modi ed adomian decomposition method (lmadm) and two traditional methods for an analytic and approximate treatment of special type of nonlinear volterra integro-diff erential equations of the second kind. the nonlinear part of integro-di fferential is approximated by adomian polynomials, and the equation is red...

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