Applied Mathematics

Applied Mathematics

ISSN Print: 2152-7385
ISSN Online: 2152-7393
www.scirp.org/journal/am
E-mail: am@scirp.org
"A Series Solution for the Ginzburg-Landau Equation with a Time-Periodic Coefficient"
written by Pradeep G. Siddheshwar,
published by Applied Mathematics, Vol.1 No.6, 2010
has been cited by the following article(s):
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[1] Controlling Rayleigh–Bénard Magnetoconvection in Newtonian Nanoliquids by Rotational, Gravitational and Temperature Modulations: A Comparative Study
Arabian Journal for Science and Engineering, 2022
[2] Three-Component Convection in a Vertically Oscillating Oldroyd-B Fluid With Cross Effects
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[3] On Comparison of Homotopy Analysis Method and Finite Difference Method for Two Dimensional Steady Compressible Flow with Pressure Gradients
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[4] The Effect of Magnetic Field on Compressible Boundary Layer by Homotopy Analysis Method
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[5] A powerful iterative approach for quintic complex Ginzburg-Landau equation within the frame of fractional operator
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[6] Linear and nonlinear triple diffusive convection in the presence of sinusoidal/non-sinusoidal gravity modulation: A comparative study
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[7] A powerful iterative approach for quintic complex Ginzburg–Landau equation within the frame of fractional operator
Fractals, 2021
[8] Bright-Dark and Multi Solitons Solutions of (3+ 1)-Dimensional Cubic-Quintic Complex Ginzburg–Landau Dynamical Equation with Applications and Stability
2020
[9] Effect of gravity modulation on linear, weakly-nonlinear and local-nonlinear stability analyses of stationary double-diffusive convection in a dielectric liquid
2020
[10] Linear and Weakly Nonlinear Analyses of Magneto-Convection in a Sparsely Packed Porous Medium under Gravity Modulation.
2020
[11] Bright-Dark and Multi Solitons Solutions of (3 1)-Dimensional Cubic-Quintic Complex Ginzburg–Landau Dynamical Equation with Applications and Stability+
2020
[12] Convection in Anisotropic Porous Medium with Gravity Modulation using Ginzburg-Landau Model
2020
[13] Thermoconvective instability in a vertically oscillating horizontal ferrofluid layer with variable viscosity
2020
[14] Regulation of heat transfer in Rayleigh–Bénard convection in Newtonian liquids and Newtonian nanoliquids using gravity, boundary temperature and rotational …
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[15] Study of the effects of three types of time-periodic vertical oscillations on the linear and nonlinear realms of Rayleigh-Bénard convection in hybrid nanoliquids
2020
[16] Rayleigh-Bénard convection in a newtonian liquid bounded by rigid isothermal boundaries
2020
[17] Linear and Weakly Nonlinear Analyses of Magneto-Convection in a Sparsely Packed Porous Medium under Gravity Modulation
Journal of Applied Fluid Mechanics, 2020
[18] Effect of trigonometric sine, square and triangular wave-type time-periodic gravity-aligned oscillations on Rayleigh–Bénard convection in Newtonian liquids and …
2019
[19] Effect of trigonometric sine, square and triangular wave-type time-periodic gravity-aligned oscillations on Rayleigh–Bénard convection in Newtonian liquids and Newtonian nanoliquids
Meccanica, 2019
[20] Mathematical Modeling in Science and Engineering
2019
[21] Comparison of the effects of three types of time-periodic body force on linear and non-linear stability of convection in nanoliquids
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[22] A Non-Linear Stability Analysis of Rayleigh Bѐnard Magnetoconvection of a Couple Stress Fluid in the Presence of Rotational Modulation
2018
[23] IJMTT Call for Paper June-2022
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[24] Analysis of Laminar Flow through a Porous Channel with Velocity Slip
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[25] Heat and Mass Transfer of Triple Diffusive Convection in a Rotating Couple Stress Liquid Using Ginzburg-Landau Model
International Journal of Mechanical, Aerospace, Industrial, Mechatronic and Manufacturing Engineering, 2017
[26] A study on the onset of thermally modulated Darcy–Bénard convection
Journal of Engineering Mathematics, 2016
[27] Solving generalized quintic complex Ginzburg–Landau equation by homotopy analysis method
Ain Shams Engineering Journal, 2016
[28] Timing stability enhancement of an Erbium Doped mode locked Fiber Laser using SESAM mirror
Optical Fiber Technology, 2016
[29] Lorenz and Ginzburg-Landau equations for thermal convection in a high-porosity medium with heat source
Ain Shams Engineering Journal, 2016
[30] Effect of rotational speed modulation on heat transport in a fluid layer with temperature dependent viscosity and internal heat source
Ain Shams Engineering Journal, 2014
[31] Introduction
Coherent Control of Nuclei and X-Rays.Springer Theses, 2014
[32] COUPLED, REAL GINZBURG-LANDAU EQUATIONS FOR RAYLEIGH-BÉNARD-BRINKMAN CONVECTION WITH HEAT SOURCE
Proceedings of 59th Congress of ISTAM, 2014
[33] ANALYTICAL STUDY OF HEAT TRANSPORT BY RAYLEIGH-BÉNARD CONVECTION IN A RADIATING LIQUID
Proceedings of 59th Congress of ISTAM, 2014
[34] COUPLED, AMPLITUDE EQUATIONS FOR RAYLEIGH-BÉNARD CONVECTION WITH HEAT SOURCE
Proceedings of 59th Congress of ISTAM, 2014
[35] Synchronous and asynchronous boundary temperature modulations of Bénard–Darcy convection
International Journal of Non-Linear Mechanics, 2013
[36] Effects of time-periodic thermal boundary conditions and internal heating on heat transport in a porous medium
Transport in porous media, 2013
[37] Nonlinear Rayleigh–Bénard Convection With Variable Heat Source
Journal of Heat Transfer, 2013
[38] Heat transport in an anisotropic porous medium saturated with variable viscosity liquid under temperature modulation
Transport in porous media, 2013
[39] Mathematica Package BVPh
Homotopy Analysis Method in Nonlinear Differential Equations. Springer Berlin Heidelberg, 2012
[40] Study of Heat Transport in Bénard-Darcy Convection with g-Jitter and Thermo-Mechanical Anisotropy in Variable Viscosity Liquids
Transport in porous media, 2012
[41] Nonlinear Thermal Instability in a Rotating Viscous Fluid Layer Under Temperature/Gravity Modulation
Journal of Heat Transfer, 2012
[42] An energy-based axial isothermal-mechanical fatigue lifing method
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[43] Non-linear Chandrasekhar-Bénard convection in temperature-dependent variable viscosity Boussinesq-Stokes suspension fluid with variable heat source/sink
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