Dr. Rama Shankar Pandey
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Dr. Rama Shankar Pandey

Associate Professor
Amity University, India


Highest Degree
Ph.D. in Physics from Banaras Hindu University, India

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Area of Interest:

Biomedical Sciences
100%
Machine Design
62%
Ionospheric Plasma
90%
Data Analysis
75%
Planetary Atmosphere
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Pandey, R.S., R. Kaur, V. Kumari and K.M. Singh, 2016. Generation of whistler mode waves by injection of cold electron beam for loss-cone distribution with AC electric field in magneto-plasma. Int. J. Adv. Res., 4: 493-501.
  2. Pandey, R.S. and R. Kaur, 2016. Analytical study of whistler mode waves in presence of parallel DC electric field for relativistic plasma in the magnetosphere of Uranus. Adv. Space Res., 58: 1417-1424.
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  3. Pandey, R.S., R. Kaur, K.M. Singh, V. Prasad and B.N. Singh, 2015. Effect of cold beam on oblique propagating relativistic EMEC waves for kappa distribution function with AC field for relativistic magneto-plasma. J. Sci. Res. Phys. Math. Sci., 2: 26-38.
  4. Pandey, R.S., R. Kaur, K.M. Singh, B.N. Singh and V. Prasad, 2015. Cold beam injection in relativistic EMEC wave for kappa distribution function with AC field for magneto-plasma. J. Adv. Phys., 7: 1371-1379.
  5. Pandey, R.S. and R. Kaur, 2015. Theoretical study of electromagnetic electron cyclotron waves in the presence of AC field in Uranian magnetosphere. New Astron., 40: 41-48.
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  6. Pandey, R.S. and R. Kaur, 2015. Oblique electromagnetic electron cyclotron waves for kappa distribution with AC field in planetary magnetospheres. Adv. Space Res., 56: 714-724.
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  7. Pandey, R.S., R. Kaur, S. Kumar and B.S. Tomar, 2014. Study of electromagnetic electron-cyclotron waves with kappa distribution function in the magnetosphere. J. Adv. Phys., 3: 334-340.
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  8. Pandey, R.S., R. Kaur, S. Kumar and B.S. Tomar, 2014. Electromagnetic electron-cyclotron waves with AC field in the magnetosphere. J. Adv. Phys., 5: 757-766.
  9. Pandey, R.S. and R. Kaur, 2014. Study of whistler mode wave by injection of relativistic hot electrons beam in the magnetosphere of Uranus. Prog. Electromagnet. Res. M, 35: 77-86.
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  10. Pandey, R.S., R. Kaur, S. Kumar and M. Kumar, 2013. Study of VLF mode instability with AC electric field for subtracted bi-Maxwellian in the magnetosphere of Uranus. J. Emerging Trends Eng. Appl. Sci., 4: 201-206.
    Direct Link  |  
  11. Pandey, R.S., R. Kaur and U.C. Srivastava, 2013. Whistler mode wave by cold plasma injection for relativistic generalized loss-cone distribution function in the magnetosphere of Uranus. Int. J. Adv. Res., 1: 367-380.
  12. Tyagi, R.K., R.S. Pandey and A. Kumar, 2012. Surface coating by means of velocity shear instability in plasma. Theor. Found. Chem. Eng., 46: 508-514.
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  13. Tyagi, R.K., K.K. Srivastava and R.S. Pandey, 2012. Non-traditional machining processes by means of velocity shear instability in plasma. Surf. Eng. Appl. Electrochem., 48: 64-68.
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  14. Tyagi, R.K., A. Kumar and R.S. Pandey, 2012. Heat flux and plasma parameters in plasma welding by means of velocity shear instability. J. Eng. Technol. Res., 4: 65-70.
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  15. Pandey, R.S., S. Kumar, D.K. Singh and S. Rani, 2012. Analysis of electromagnetic whistler mode instability for relativistic plasma: Lorentzian kappa. Int. J. Sci. Res. Publ., 2: 122-128.
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  16. Pandey, R.S., S. Kumar and M. Kumar, 2012. Oblique propagating whistler mode wave with parallel AC electric field at magnetosphere of Uranus. J. Theor. Appl. Phys., Vol. 6. 10.1186/2251-7235-6-31.
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  17. Pandey, R.S. and R. Kaur, 2012. Generation of low frequency electromagnetic wave by injection of cold electron for relativistic and non-relativistic subtracted bi-Maxwellian distribution with perpendicular AC electric field for magnetosphere of Uranus. Prog. Electromagnet. Res. B, 45: 337-352.
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  18. Tyagi, R.K., R.S. Pandey, A. Kumar and K.K. Srivastava, 2011. Effect of electric and magnetic field on welding parameters in plasma welding. Int. J. Eng. Sci. Technol., 3: 168-176.
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  19. Tyagi, R.K., K.K. Srivastava, R.S. Pandey and N.K. Pandey, 2011. Effect of velocity shear instability on diesel engine ignition delay. J. Mech. Eng., 2: 61-64.
  20. Tyagi, R.K., K.K. Srivastava and R.S. Pandey, 2011. Analytical and experimental study of velocity shear instability in the presence of inhomogeneous perpendicular DC electric field. J. Eng. Technol. Res., 3: 118-126.
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  21. Tyagi, R.K., K.K. Srivastava and R.S. Pandey, 2011. Analysis of electrostatic ion-cyclotron instability driven by parallel flow velocity shear. Surface Eng. Applied Electrochem., 47: 370-377.
  22. Tyagi, R.K., K.K. Srivastava and R.S. Pandey, 2011. Analysis of electrostatic ion-cyclotron instability driven by parallel flow velocity shear. Surf. Eng. Appl. Electrochem., 47: 150-159.
  23. Tyagi, R.K. and R.S. Pandey, 2011. Effect of electric and magnetic field on metal cutting by velocity shear instability. J. Emerging Trends Eng. Appl. Sci., 2: 693-697.
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  24. Pandey, R.S., U.C. Srivastava, A.K. Chaubey and K.M. Singh, 2011. Velocity shear ion-cyclotron higher harmonics instability in the presence of perpendicular A.C. electric field. Br. J. Appl. Sci. Technol., 1: 27-40.
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  25. Pandey, R.S., R.P. Pandey, H. Singh, J. Kishor, N.K. Pandey and S.M. Karim, 2011. Generation of obliquely propagating whistler mode instability for inhomogeneous ionospheric plasma. Arch. Phys. Res., 2: 1-11.
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  26. Pandey, R.S., A.K. Singh and P. Kumar, 2011. Excitation of VLF mode instability with electric field by loss-cone distribution. Arch. Phys. Res., 2: 190-201.
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  27. Pandey, R.S. and D.K. Singh, 2011. Whistler mode instability with AC electric field for relativistic Subtracted bi-maxwellian magneto-plasma. Arch. Appl. Sci. Res., 3: 350-361.
  28. Srivasatava, U.C., R.S. Pandey and K.S. Upadhayaya, 2010. Lattice dynamical study of KBr by theoretical approaches. Int. J. Phys. Sci., 5: 972-977.
  29. Singh, M., S. Redhu, S. Duhan and R.S. Pandey, 2010. Steady-state and transient Raman gain in magnetoactive narrow band-gap semiconductors. Opt. Laser Technol., 42: 202-207.
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  30. Pandey, R.S., U.C. Srivastava, A.K. Srivastava, S. Kumar and D.K. Singh, 2010. Pitch angle loss-cone anisotropic magneto plasma in presence of parallel electric A.C. field. Arch. Phys. Res., 1: 126-136.
    Direct Link  |  
  31. Pandey, R.S., R.K. Verma, S. Kumar and D.K. Singh, 2010. Generation of electromagnetic whistler mode instability for inhomogeneous ionospheric plasma. Int. J. Theor. Appl. Sci., 2: 1-5.
    Direct Link  |  
  32. Pandey, R.S., M. Singh, P. Kumar, K.M. Singh and S. Kumar, 2010. Generation of VLF mode instability by generalized distribution function in the presence of parallel AC electric field in Uranus. Plasma Sci. Technol., Vol. 12. 10.1088/1009-0630/12/4/08.
    CrossRef  |  Direct Link  |  
  33. Pandey, R.S. and D.K. Singh, 2010. Study of electromagnetic ion-cyclotron instability in a magnetoplasma. Prog. Electromagnet. Res. M, 14: 147-161.
    CrossRef  |  Direct Link  |  
  34. Pandey, R.S., 2009. Gradient effect on kelvin helmholtz instability in the presence of inhomogeneous DC electric field. Prog. Electromagnet. Res. B, 11: 39-53.
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  35. Pandey, R.S. and K.D. Misra, 2009. Observation of suprathermal flux from SROSS-C2 data at low latitude. Phys. Res. Int. 10.1155/2009/748104.
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  36. Pandey, R.S., U.C. Srivastava, S. Kumari and A. Kumar, 2008. Parallel flow velocity shear kelvin helmholtz instability with AC electric field. Prog. Electromagnet. Res. B, 10: 21-34.
    CrossRef  |  Direct Link  |  
  37. Pandey, R.S., U.C. Srivastava, R.P. Pandey and B.B. Prasad, 2008. Velocity shear ion-cyclotron instability with perpendicular AC electric field. Prog. Electromagnet. Res. M, 3: 177-191.
    CrossRef  |  Direct Link  |  
  38. Pandey, R.S., R.P. Pandey, A.K. Srivastava and S.M. Karim, 2008. The electromagnetic ion-cyclotron instability in the presence of A.C. electric field for Lorentzian kappa. Prog. Electromagnet. Res. M, 1: 207-217.
    CrossRef  |  Direct Link  |  
  39. Pandey, R.S. and R.P. Pandey, 2008. Cold plasma injection on VLF wave mode for relativistic magnetoplasma with A.C. electric field. Prog. Electromagnet. Res. C, 2: 217-232.
    CrossRef  |  Direct Link  |  
  40. Pandey, R.S., R.P. Pandey, A.K. Srivastav and K. Dubey, 2005. Analytical study of whistler mode instability with parallel AC field by Lorentzian kappa. Indian J. Radio Space Phys., 34: 98-105.
    Direct Link  |  
  41. Pandey, R.S., R.P. Pandey, A.K. Srivasta, S.M. Karim and R.K. Jha, 2005. Higher harmonics electrostatics ion-cyclotron instability with perpendicular A.C. electric field. Indian J. Phys. B, 79: 1179-1185.
  42. Pandey, R.S., K.D. Misra and A.K. Tripathi, 2003. Generation of electrostatics ion-cyclotron wave by parallel flow velocity shear in the presence of inhomogeneous electric field in an anisotropic magneto-plasma. Indian J. Radio Space Phys., 32: 75-82.
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  43. Pandey, R.S. and K.D. Misra, 2003. On the Generation of VLF Pulsation at Low Latitude by Loss-Cone Driven Instability in the Presence of Perpendicular AC Electric. In: Very Low Frequency (Vlf) Phenomena. Hughes, A.R.W. and A.K. Gwal (Ed.). Narosa Publishing House, New Delhi, India., pp: 264-273..
  44. Pandey, R.P., A. Bharadwaj, R.S. Pnndey and K.D. Misra, 2003. On the Generation of Pulsating Whistler Waves in the Presence of Parallel AC Electric Field for Loss Cone Anisotropic Magnetoplasma. In: Very Low Frequency (Vlf) Phenomena. Hughes, A.R.W. and A.K. Gwal (Ed.). Narosa Publishing House, New Delhi, India., pp: 233-243..
  45. Pandey, R.S. and K.D. Misra, 2002. Excitation of oblique whistler waves in magnetosphere and in interplanetary space at 1 A.U. Earth Planets Space, 54: 159-165.
    CrossRef  |  Direct Link  |  
  46. Pandey, R.P., S.M. Karim, K.M. Singh and R.S. Pandey, 2002. Effect of cold plasma injection on whistler mode instability triggered by perpendicular AC electric field at Uranus. Earth Moon Planets, 91: 195-207.
    CrossRef  |  Direct Link  |  
  47. Pandey, R.P., R.S. Pandey and K.D. Misra, 2002. Temporal evolution of whistler instability due to cold plasma injection in the presence of perpendicular AC electric field in the Magnetosphere of Uranus. Earth Moon Planets, 91: 209-222.
    CrossRef  |  Direct Link  |  
  48. Pandey, R.P., K.M. Singh, S.M. Karim, K.D. Misra and R.S. Pandey, 2002. Current-driven oblique whistler mode by cold plasma injection in the magnetosphere of Uranus. Indian J. Phys. B, 76: 619-625.
  49. Pandey, R.S., K.D. Misra and A.K. Tripathi, 2001. Kelvin-Helmholtz instability in an anisotropic magneto-plasma in the presence of inhomogeneous perpendicular electric field and parallel flow velocity shear. Indian J. Radio Space Phys., 30: 113-120.
    Direct Link  |  
  50. Pandey, R.P., K.M. Singh and R.S. Pandey, 1999. A theoretical study of the whistler mode instability at the Uranian Bow Shock. Earth Moon Planets, 87: 59-71.
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  51. Pandey, R.P., K.K. Singh, K.M. Singh and R.S. Pandey, 1999. Current driven oblique whistler wave in the magnetosphere of Uranus. Indian J. Phys., 73: 593-604.
  52. Misra, K.D. and R.S. Pandey, 1997. Oblique electrostatic ion-cyclotron instability in auroral magnetosphere in the presence of electric field. Indian J. Radio Space, 26: 230-235.
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  53. Misra, K.D. and R.S. Pandey, 1995. Generation of whistler emissions by injection of hot electrons in the presence of a perpendicular AC electric field. J. Geophys. Res.: Space Phys., 100: 19405-19411.
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