Department of Physics & Material Science

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Faculty List


   
B. K. Pandey
Professor & Head
Qualification:
D.Phil.
Area of Interest:
Solid State Physics (Electronics, Condensed Matter Physics, Nanomaterial )
Email ID:
bkpmmmec11@gmail.com, bkp11@rediffmail.com
   
   
D.K. Dwivedi
PROFESSOR
Qualification:
M.Sc.(Gold Medalist),CSIR-NET-JRF, Ph.D(Condensed Matter Physics)
Area of Interest:
Amorphous Semiconductors, Optoelectronic Materials and Devices, Fiber Optic Sensors, Solar Cells, Plasmonic Sensors.
Email ID:
todkdwivedi@gmail.com
   
   
Abhishek Kumar Gupta
ASSISTANT PROFESSOR
Qualification:
Post Doc.(DU, New Delhi), Ph.D.(BHU, Varanasi)[Topper-Ph.D. Course Work, qualify/selected for UGC-DSK, CSIR-NET, JRF, SRF, GATE, JEST, RFSMS], Master of Science (2nd Topper, DDUGU)
Area of Interest:
Energy Storage Technology:Materials & Devices,Li & Na ion Batteries, Supercapacitors, Solar Cells/PVs, Sensors, Nanoionics, Solid State Ionics, Material Science(Experimental,Theoretical/Computational)
Email ID:
akgpms@mmmut.ac.in
   
   
Satya Pal Singh
ASSISTANT PROFESSOR
Qualification:
Ph.D- 2008 Dr. R. M. L. Avadh University Postdoc-IIT Kanpur Subject Teaching: Engg. Phys-I (2009 onwards) Engg. Phys-II 2009 onwards) Space Science 2009 Onwards Nanoscience & Nanotechnology 2009 Onwards Computational Technique & Programming (M.Sc Physics 2018 onwards) Condensed Matter Physics (M.Sc Physics 2018 onwards) Thermodynamics & Statistical Mechanics (M.Sc-Physics 2019 Onwards)
Area of Interest:
Condensed Matter Physics (Experiment/Theory) / Computational Physics/ Nanoscience Int. Res.Papers: 31 Published. (26 SCI/Scopus)+ 03 Under Rev. Nat.Res. Papers:18 Conf.:26Int.+15 Nat.Book-01
Email ID:
singh.satyapal@hotmail.com
   

Recent News

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  • AKG/Unit IV: Approximate Methods
    AKG/Further Notes on The Variational method

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  • AKG/AQM/Unit IV: Approximate Methods/Perturbation theory
    AKG/AQM/Unit IV: Approximate Methods/Perturbation theory

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  • AKG/AQM/Unit IV: Approximate Methods
    AKG/The Variational method, Estimation of ground state energy

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  • AKG/AQM/ZETTILI BOOK
    Unit IV: Approximate Methods

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  • AKG/AQM/Unit IV: Approximate Methods
    AKG/The Wentzel-Kramers-Brillouin (WKB) method, Validity of the WKB approximation

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  • AKG/AQM/Unit III: Field Quantization
    Introduction to quantum field theory, Lagrangian field theory, Euler–Lagrange equations, Hamiltonian formalism, Quantized Lagrangian field theory, Canonical commutation relations, Normal ordering, Fock space

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  • AKG/AQM/
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  • ADVANCE QUANTUM MECHANICS
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  • Unit II: Covariance of Dirac Equation
    AKG/Unit-II/Covariance of Dirac Equation

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  • Unit I: Formulation of Relativistic Quantum Theory
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  • Unit III: Field Quantization
    AKG/Unit-III/ntroduction to quantum field theory, Lagrangian field theory

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-18

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-17

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-16

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-15

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-11

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-9

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-1

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  • MPM-202, Unit-II, Lecture-8

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  • MPM-202, Unit-I, Lecture-8

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-33

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-32

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-31

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-30

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-29

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-28

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  • E- content of Engineering Physics-I BPM-01 Unit-IV Lecture-27

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-26

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-25

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-24

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-23

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-22

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-21

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-20

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-19

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  • E- content of Engineering Physics-I BPM-01 Unit-III Lecture-18

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-17

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-16

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-15

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-14

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-11

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-7

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-1

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  • E- content of Engineering Physics-II BPM-02 Unit-I(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-IV(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-III(ii)

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  • E- content of Engineering Physics-II BPM-02 Unit-II(iii)

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  • National Conference organized by the Department
    National Conference organized by the Department during 15-16 March 2019 on Smart Materials Devices and Sustainable Technologies

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