Results 51 to 60 of about 5,555 (156)
A New Iterative Methods For a Family of Asymptotically Severe Mappings
Abstract The aim of this paper is to introduce the concepts of asymptotically p-contractive and asymptotically severe accretive mappings. Also, we give an iterative methods (two step-three step) for finite family of asymptotically p-contractive and asymptotically severe accretive mappings to solve types of equations.
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An Extension of the Optimal Homotopy Asymptotic Method to Coupled Schrödinger-KdV Equation
We consider the approximate solution of the coupled Schrödinger-KdV equation by using the extended optimal homotopy asymptotic method (OHAM). We obtained the extended OHAM solution of the problem and compared with the exact, variational iteration method (
Hakeem Ullah +4 more
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Construction of exact solutions to eigenvalue problems by the asymptotic iteration method [PDF]
10 ...
Hall, RL, Ciftci, HAKAN, Saad, N
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A Novel Approach to Solve Quasiexactly Solvable Pauli Equation
The spectra for some specific forms of external magnetic fields in Pauli equation are obtained in the framework of the asymptotic iteration method (AIM). AIM is applied to find the solution of Pauli equation.
Ramazan Koç, Eser Olğar, Haydar Mutaf
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In this paper, a new analytic iterative technique, called the residual power series method (RPSM), is applied to time fractional Whitham–Broer–Kaup equations. The explicit approximate traveling solutions are obtained by using this method.
Linjun Wang, Xumei Chen
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Quasinormal frequencies of gravitational perturbation in regular black hole spacetimes
The quasinormal frequencies of gravitational perturbation around some well-known regular black holes were investigated in this work. We consider complete perturbations of the energy-momentum tensor of electromagnetic part for non-linear electrodynamics ...
Chen Wu
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Schrödinger spectrum generated by the Cornell potential
The eigenvalues Ednl (a, c) of the d-dimensional Schrödinger equation with the Cornell potential V(r) = −a/r + c r, a, c > 0 are analyzed by means of the envelope method and the asymptotic iteration method (AIM).
Hall Richard L., Saad Nasser
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A New Approach to Black Hole Quasinormal Modes: A Review of the Asymptotic Iteration Method
We discuss how to obtain black hole quasinormal modes (QNMs) using the asymptotic iteration method (AIM), initially developed to solve second-order ordinary differential equations.
H. T. Cho +4 more
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Perturbing microscopic black holes inspired by noncommutativity
We probe into the instabilities of microscopic quantum black holes. For this purpose, we study the quasinormal modes (QNMs) for a massless scalar perturbation of the noncommutative geometry inspired Schwarzschild black hole.
D. Batic +3 more
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In this article, we explore the utilization of the Caputo derivative and the Riemann–Liouville (R–L) fractional integral to analyze the optimal auxiliary function method for approximating fractional nonlinear long waves.
Aaqib Iqbal +4 more
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