International Journal of Astronomy and Astrophysics

International Journal of Astronomy and Astrophysics

ISSN Print: 2161-4717
ISSN Online: 2161-4725
www.scirp.org/journal/ijaa
E-mail: ijaa@scirp.org
"A Numerical Characterization of the Gravito-Electrostatic Sheath Equilibrium Structure in Solar Plasma"
written by Pralay Kumar Karmakar, Chandra Bhushan Dwivedi,
published by International Journal of Astronomy and Astrophysics, Vol.1 No.4, 2011
has been cited by the following article(s):
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[2] Analyzing non-thermal steady solar plasmas in the κ-modified polytropic GES model framework
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[3] Non-planar magnetoactive GES-based solar plasma stability
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[4] Effect of Electronic Inertia on the Gravito-Electrostatic Sheath Structure Formation1
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[5] Nonextensive GES instability with nonlinear pressure effects
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[6] Effect of Electronic Inertia on the Gravito-Electrostatic Sheath Structure Formation
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[7] An elog-KdVB dynamics in non-thermal solar plasmas
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[8] A theoretic study of equilibrium and perturbation plasma dynamics
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[9] Effect of Electronic Inertia on the Gravito-Electrostatic Sheath Structure Formation.
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[10] Nonextensive turbulent gravito-electrostatic sheath (GES) equilibrium structure
A LETTERS JOURNAL EXPLORING THE FRONTIERS OF PHYSSICS, 2017
[11] Turbulent Gravito-Electrostatic Sheath (GES) Structure with Kappa-Distributed Electrons for Solar Plasma Characterization
Solar Physics, 2017
[12] Results in Physics
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[13] Modified gravito-electrostatic sheath in the presence of turbu-magnetic pressure effects
A LETTERS JOURNAL EXPLORING THE FRONTIERS OF PHYSSICS, 2016
[14] A theoretical model for electromagnetic characterization of a spherical dust molecular cloud equilibrium structure
arXiv preprint arXiv:1410.4656, 2015
[15] Gravitoelectromagnetic sheath
Astrophysics and Space Science, 2015
[16] Equilibrium structure of gravito-electrostatic sheath in the presence of inhomogeneous temperature distribution
EPL (Europhysics Letters), 2015
[17] ContributionstoPlasmaPhysics
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[18] Inertia-centric stability analysis of a planar uniform dust molecular cloud with weak neutral-charged dust frictional coupling
Plasma Science and Technology, 2014
[19] NEW SELF-GRAVITATIONAL OSCILLATORY EIGENMODE PATTERNS OF SOLAR PLASMA WITH BOLTZMANN-DISTRIBUTED ELECTRONS
European Scientific Journal, 2014
[20] Nonlinear Self‐Gravitational Solar Plasma Fluctuations with Electron Inertia
Contributions to Plasma Physics, 2013
[21] Inertia-induced Excitation Theory for Nonlinear Electrostatic Eigenmodes in Solar Plasma
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[22] A new technique for electromagnetic characterization of spherical dust molecular cloud equilibrium structure
Results in Physics, 2012
[23] ANALYSIS OF NON-THERMAL SOLAR PLASMAS IN κ-MODIFIED POLYTROPIC GES MODEL FRAMEWORK
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