Department of Physics & Material Science

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DEPARTMENT OF PHYSICS AND MATERIAL SCIENCE Labs


Sno. Lab Name OC
  Physics Laboratory-I Dr. B. K. Pandey
  Physics Laboratory -II Dr. A. K. Gupta
  Solid State Physics Laboratory Prof. D. K. Dwivedi
  Electronic Devices and Circuit Laboratory Prof. D. K. Dwivedi
  Condensed Matter Physics Laboratory Dr. B. K. Pandey
  Spectroscopy and Laser Laboratory Dr. B. K. Pandey
  Analog and Digital Communication Laboratory Prof. D. K. Dwivedi
  Optoelectronics and Optical Communication Laboratory Prof. D. K. Dwivedi
  Amorphous Semiconductor Research Laboratory Prof. D. K. Dwivedi
  Computational Condensed Matter Physics Research Laboratory Dr. S. P. Singh

All the Labs of the Department are well connected to Internet.

Recent News

  • Best Paper Award presented to Mr. Sachin Singh, Ph.D. Scholar (Supervisor- Prof. D. K. Dwivedi)
    in ICVMWT-2021 held during March 20-21, 2021 at MMMUT, Gorakhpur

  • Major Research Project
    Major Research Project of Amount 11.44 Lacs sanctioned to Prof. D. K. Dwivedi from UPCST

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  • Ms Huma Farooqui (Under the supervision of Prof. B. K. Pandey) Student of M.Sc. Physics final year won the best paper award in the in the second national conference on “Recent Advancement in Physical Sciences” jointly organized by Department of Physics, Chemistry and Mathematics. National Institute of Technology Uttarakhand during 19-20 Dec. 2020.

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  • Best Oral Presentation Award of Excellence in International Conference on “Advanced Functional Materials and Devices (AFMD-2021)”, ARSDC and IQAC, University of Delhi, New Delhi
    Sarvesh Kumar Gupta, Ph.D. student (Supervisor- Dr. A. K. Gupta), Physics and Material Science received Best Oral Presentation Award of Excellence in International Conference "AFMD-2021"

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  • AKG/ D J Griffiths - Quantum Mechanics
    AKG/ Useful for Unit IV: Approximate Methods

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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/
    AKG/Quantum Field Theory by F. Mandl & G. Shaw

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  • ADVANCE QUANTUM MECHANICS
    AKG/BOOK/AQM/[James_D Bjorken, Sidney D.Drell/RQM

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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
    AKG/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-13

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-II- Lecture-12

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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-II- Lecture-10

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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-8

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-7

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-6

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-5

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-4

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-3

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  • E=Content of Nuclear and Particle Physics (MPM-203) Unit-I- Lecture-2

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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-II, Lecture-7

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  • MPM-202, Unit-II, Lecture-6

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  • MPM-202, Unit-II, Lecture-5

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  • MPM-202, Unit-II, Lecture-4

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  • MPM-202, Unit-II, Lecture-3

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  • MPM-202, Unit-II, Lecture-2

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  • MPM-202, Unit-II, Lecture-1

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  • MPM-202, Unit-I, Lecture-8

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  • MPM-202, Unit-I, Lecture-7

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  • MPM-202, Unit-I, Lecture-7

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  • MPM-202, Unit-I, Lecture-6

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  • MPM-202, Unit-I, Lecture-5

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  • MPM-202, Unit-I, Lecture-4

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  • MPM-202, Unit-I, Lecture-3

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  • MPM-202, Unit-I, Lecture-3

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  • MPM-202, Unit-I, Lecture-2

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  • MPM-202, Unit-I, Lecture-1

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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-13

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  • E- content of Engineering Physics-I BPM-01 Unit-II Lecture-12

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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-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-6

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-5

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-4

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-3

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  • E- content of Engineering Physics-I BPM-01 Unit-I Lecture-2

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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-IV(i)

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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-III(i)

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

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

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

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

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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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