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The [course_title] will introduce you to the fundamental ideas of quantum mechanics, introduce the path integral for a non-relativistic point particle, and use it to derive time-dependent perturbation theory and the Born series for non-relativistic scattering. The course concludes with an introduction to relativistic quantum mechanics and the ideas of quantum field theory. After having this course you will be able to explain what quantum theory is, including some key principles and scenarios, and list some applications of quantum theory.


This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.


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Course Credit: Open Culture

Course Curriculum

Module 01
Mod-01 Lec-01 Introduction 00:38:00
Mod-01 Lec-02 Introduction to Classical Field Theory 00:38:00
Mod-01 Lec-03 Quantization of Real Scalar Field – I 00:47:00
Mod-01 Lec-04 Quantization of Real Scalar Field – II 00:43:00
Mod-01 Lec-05 Quantization of Real Scalar Field – III 00:45:00
Mod-01 Lec-06 Quantization of Real Scalar Field – IV 00:49:00
Module 02
Mod-01 Lec-07 Quantization of Complex Scalar Field 00:49:00
Mod-02 Lec-08 Interacting Field Theory – I 00:47:00
Mod-02 Lec-09 Interacting Field Theory – II 00:47:00
Mod-02 Lec-10 Interacting Field Theory – III 00:54:00
Mod-02 Lec-11 Interacting Field Theory – IV 00:45:00
Mod-02 Lec-12 Interacting Field Theory – V 00:45:00
Module 03
Mod-02 Lec-13 Interacting Field Theory – VI 00:49:00
Mod-02 Lec-14 Interacting Field Theory – VII 00:58:00
Mod-03 Lec-15 Quantuzation of Electromagnetic Field I 00:32:00
Mod-03 Lec-16 Quantuzation of Electromagnetic Field II 00:55:00
Mod-03 Lec-17 Fermion Quantization I 00:41:00
Mod-03 Lec-18 Fermion Quantization II 00:52:00
Module 04
Mod-03 Lec-19 Fermion Quantization III 00:54:00
Mod-03 Lec-20 Fermion Quantization IV 00:47:00
Mod-03 Lec-21 Fermion Quantization V 00:48:00
Mod-03 Lec-22 Fermion Quantization VI 00:49:00
Mod-04 Lec-23 The S-Matrix Expansion in QED I 00:51:00
Mod-04 Lec-24 The S-Matrix Expansion in QED II 00:49:00
Module 05
Mod-04 Lec-25 Feynman Rules in QED I 00:51:00
Mod-04 Lec-26 Feynman Rules in QED II 00:46:00
Mod-04 Lec-27 Compton Scattering I 00:50:00
Mod-04 Lec-28 Compton Scattering II 00:48:00
Mod-04 Lec-29 Compton Scattering III 00:52:00
Mod-04 Lec-30 Moller Scattering I 00:44:00
Mod-04 Lec-31 Moller Scattering II 00:49:00
Module 06
Mod-05 Lec-32 Vertex Correction I 00:47:00
Mod-05 Lec-33 Vertex Correction II 00:51:00
Mod-05 Lec-34 Vertex Correction III 00:45:00
Mod-05 Lec-35 Vertex Correction IV 00:39:00
Mod-05 Lec-36 Electron Selfenergy 00:50:00
Mod-05 Lec-37 Photon Selfenergy I 00:50:00
Mod-05 Lec-38 Photon Selfenergy II 00:49:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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