Hi, I am Mahinder Singh Bhardwaj, My LiveDNA is 91.4401
 
   
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Dr. Mahinder Singh Bhardwaj
 
Highest Degree: Ph.D. in Mathematics from Govt. Post Graduate College, India
 
Institute: Govt. Post Graduate College, India
 
Area of Interest: Mathematics
  •   Applied Mathematics
  •   Mathematical Analysis
  •   Fluid Dynamics
  •   Thermal Instability
 
URL: http://livedna.org/91.4401
 
My SELECTED Publications
1:   Gupta, R.K. and M. Singh, 2012. Stability of Stratified Rotating Viscoelastic Rivlin-Ericksen Fluid in the Presence of Variable Magnetic Field. Adv. Appl. Sci. Res., 3: 3253-3258.
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2:   Kumar, P. and M. Singh, 2008. Thermal instability of kuvshiniski viscoelastic fluid with finite dust in a porous medium. Int. J. Applied Mech. Eng., 13: 193-201.
3:   Kumar, P. and M. Singh, 2008. Instability of two rotating maxwellian viscoelastic superposed fluids with variable magnetic field in porous medium. J. Ganita Sandesh, 21: 147-160.
4:   Kumar, P. and M. Singh, 2006. On a visco-elastic fluids heated from below in a porous medium. J. Non-Equilib. Thermodyn, 31: 189-203.
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5:   Kumar, P. and M. Singh, 2007. Hydrodynamic and hydro magnetic stability of viscous- viscoelastic superposed fluids in presence of suspended particles. Phys. Separation Sci. Eng., 2007: 1-6.
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6:   Kumar, P. and M. Singh, 2007. Instability of two rotating Visco-elastic (WALTERS B') superposed particles in porous medium. Int. J. Thermal Science, 11: 102-102.
7:   Kumar, P. and M. Singh, 2008. On superposed maxwellian viscoelasticfluids through porous medium in hydromagnetic. IeJEMTA, 3: 158-158.
8:   Kumar, P. and M. Singh, 2008. Rotatory thermosolutal convection in a Couple-stress fluids. Z. Naturforch, 64: 448-454.
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9:   Kumar, P. and M. Singh, 2009. Megneto-thermosolutal convection in a compressible Couple-stress fluid. Z.Naturforch, 64: 1-6.
10:   Kumar, P. and M. Singh, 2009. Thermal instability of a compressible electrically conducting Couple-stress fluid in the presence of a uniform magnetic field. Int. J. Applied Mech. Eng., 14: 865-865.
11:   Kumar, P. and M. Singh, 2010. Magneto thermal convection in a compressible Couple-stress fluid. Z. Naturforsch., 65: 215-220.
12:   Kumar, P., M. Singh and G. Singh, 2008. Instability of two rotating maxwellian viscoelastic superposed fluids with variable magnetic field in porous medium Acta Cienc. Indica, 34: 1449-1449.
13:   Kumar, P., M. Singh and P. Sharma, 2006. On the stability of superposed viscous-viscoelastic(couple-stress) fluids through porous medium. J. Ganita Sandesh, 20: 178-178.
14:   Kumar, P., M. Singh and R. Lal, 2007. Hydrodynamic and hydromagnetic stability of two stratified Rivilin-ericksen superposed fluids. Int. J. Applied Mech. Eng., 12: 653-653.
15:   Mehta, C.B., M. Singh and S. Kumar, 2016. Thermal convection of magneto compressible couple-stress fluid saturated in a porous medium with Hall current. Int. J. Applied Mech. Eng., 21: 83-93.
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16:   Singh, M. and C.B. Mehta, 2013. Hall effect on Benard convection of compressible viscoelastic fluid through porous medium. J. Fluids, Vol. 2013. 10.1155/2013/910531.
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17:   Singh, M. and C.B. Mehta, 2013. On compressible couple-stress fluid heated and soluted from below in porous medium in presence of rotation and magnetic field. J. Mech. Eng. Technol., 1: 21-33.
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18:   Singh, M. and C.B. Mehta, 2013. Thermal instability of magneto rotatory compressible couple-stress fluid. Int. J. Phys. Math. Sci., 4: 401-495.
19:   Singh, M. and C.B. Mehta, 2014. Hydrodynamic and hydromagnetic stability of superposed rivlin-ericksen elastico viscous fluid of different permeability with porous medium. J. Bioinformatics Biol. Eng., 2: 13-19.
20:   Singh, M. and C.B. Mehta, 2015. Hydrodynamic and hydromagnetic stability of two superposed elastic-viscous fluid of different permeability with dust through porous medium. IJAME, 20: 147-157.
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21:   Singh, M. and P. Kumar, 2011. Hydrodynamic and hydromagnetic stability of two stratified Walter's B' elastico viscous superposed fluids Int. J. Applied Mech. Eng., 16: 233-241.
22:   Singh, M. and P. Kumar, 2011. Magneto and rotatory thermosolutal convection in Couple-stress fluid in porous medium. J. Porous Medium, 14: 637-648.
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23:   Singh, M. and R.K. Gupta, 2011. Thermal instability of Rivlin-Ericksen elastico-viscous fluid permeated with suspended particles in hydrodynamics in a porous medium. Int. J. Applied Mech. Eng., 16: 1169-1179.
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24:   Singh, M. and R.K. Gupta, 2013. Hall effect on thermal instability of viscoelastic dusty fluid in porous medium. Int. J. Applied Mech. Eng., 18: 871-886.
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25:   Singh, M. and R.K. Gupta, 2014. Double-diffusive convection in presence of compressible rivlin-ericksen fluid with fine dust. J. Fluids, Vol. 2014. 10.1155/2014/714150.
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26:   Singh, M. and R.K. Gupta, 2014. On thermosolutal convection in presence of compressible fluid with fine dust. Int. J. Applied Mech. Eng., 19: 133-143.
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27:   Singh, M., 2011. Hall current effect on thermosolutal instability in a viscoelastic fluid flowing in a porous medium. Int. J. Applied Mech. Eng., 16: 69-82.
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28:   Singh, M., 2011. Hall current effect on thermosolutal instability in viscoelastic fluids through porous medium. IJAME, 16: 869-874.
29:   Singh, M., 2015. Stability of superposed fluids through magnetic field with suspended particles of different permeability saturated through porous layer. Int. J. Applied Mech. Eng., 20: 889-898.
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30:   Singh, M., 2016. Effective interfacial tension effect on the instability of streaming Rivlin-Ericksen elastico-viscous fluid flow through a porous medium. Int. J. Applied Mech. Eng., 21: 221-229.
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31:   Singh, M., C.B. Mehta and S. Gangta, 2012. Thermosolutal Convection in Compressible, Rotating Couple-Stress Fluid in the Presence of Magnetic Field. Adv. Appl. Sci. Res., 3: 3459-3468.
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