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Difference between revisions of "Teaching"

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== Courses taught at the University of Wolverhampton ==
== Courses taught at the University of Wolverhampton ==
===2020/21 ===
* Solid State Physics (5AP002, Lectures & Tutorials; Module leader):
** Lecture 1: Introduction to lattices [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=9f397a61-da60-4616-a1b6-ac3e00b7b371 <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:5AP002-Lecture 1-lattices.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]
** Lecture 2: Bravais lattices [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=d6928acd-49df-4d43-8286-ac3e00b7f19b <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:5AP002-Lecture 2-bravais lattices.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]


===2019/20 ===
===2019/20 ===


* Quantum Mechanics (4AP003, Lectures; Module leader): <span style="color:#800000"> '''This module was taking place when [[Coronavirus|COVID-19]] broke out in Europe and we had to turned it into an online course. The recordings of the lectures is on the links below.''' </span>
* Quantum Mechanics (4AP003, Lectures; Module leader): <span style="color:#800000"> '''This module was taking place when [[Coronavirus|COVID-19]] broke out in Europe and we had to turned it into an online course. The recordings of the lectures are on the links below.''' </span>
** Lecture 10: Solutions to the harmonic oscillator [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=d1e79f04-3142-4262-a4db-ab7f0180ecc2 <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:4AP003-Lecture-Solutions_of_the_Harmonic_oscillator.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]
** Lecture 10: Solutions to the harmonic oscillator [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=d1e79f04-3142-4262-a4db-ab7f0180ecc2 <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:4AP003-Lecture-Solutions_of_the_Harmonic_oscillator.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]
** Lecture 11: Free particle [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=bcead7da-1a72-417e-ad82-ab80017959cf <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:4AP003-Lecture-Free_particle.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]
** Lecture 11: Free particle [https://wlv.cloud.panopto.eu/Panopto/Pages/Viewer.aspx?id=bcead7da-1a72-417e-ad82-ab80017959cf <i class="fa fa-video-camera" aria-hidden="true"></I>] [[:Media:4AP003-Lecture-Free_particle.pdf|<i class="fa fa-file-pdf-o" aria-hidden="true"></i>]]

Revision as of 11:58, 23 September 2020


Courses taught at the University of Wolverhampton

2020/21

  • Solid State Physics (5AP002, Lectures & Tutorials; Module leader):
    • Lecture 1: Introduction to lattices
    • Lecture 2: Bravais lattices

2019/20

  • Quantum Mechanics (4AP003, Lectures; Module leader): This module was taking place when COVID-19 broke out in Europe and we had to turned it into an online course. The recordings of the lectures are on the links below.
    • Lecture 10: Solutions to the harmonic oscillator
    • Lecture 11: Free particle
    • Lecture 12: Reciprocal space
    • Lecture 13: Uncertainty principle
    • Lecture 14: Bound state of the $\delta$-potential
    • Lecture 15: Scattering states of the $\delta$-potential
    • Lecture 16: Bound states of the finite square well potential
    • Lecture 17: The Hilbert space
    • Lecture 18: Operators in the Hilbert space
    • Lecture 19: Postulates of Quantum Mechanics
    • Lecture 20: Bosons: ladder operators and coherent states
    • Lecture 21: Fermions: the two-level system and Pauli matrices
    • Lecture 22: Rabi oscillations
  • Electromagnetism I (4AP004, Tutorials)
  • Solid State Physics (5AP002, Lectures & Tutorials; Module leader)
  • Electromagnetism II (5AP001, Tutorials)

2018/19

  • Quantum Mechanics (4AP003, Tutorials)
  • Electromagnetism I (4AP004, Lectures & Tutorials; Module leader)
  • Optics (4AP001, Tutorials)
  • Solid State Physics (5AP002, Lectures & Tutorials; Module leader)
  • Electromagnetism II (5AP001, Tutorials)
  • Thermodynamics & Statistical Physics (5AP004, Tutorials)
  • Quantum Physics (5AP005, Tutorials)
  • Mathematical Methods (5AP004, Tutorials)