UNDERGRAD PHYSICS
Welcome to UNDERGRAD PHYSICS ! Dive into the fascinating world of physics with me as we explore topics ranging from quantum mechanics and thermal physics to classical mechanics and mathematical physics. Join me on this educational journey as we unravel the mysteries of the universe, covering subjects like statistical mechanics, solid-state physics, electronics, and optics. Whether you're a student, enthusiast, or simply curious about the wonders of physics, you'll find engaging and insightful content to expand your knowledge and understanding of the natural world. Subscribe now and embark on a voyage through the realms of physics!

Lecture 55 | A Classical Treatment of Incident Radiation | Time Dependent Perturbation Theory

Lecture 54 | Interaction of Atoms with Radiation | Derivation of Hamiltonian in Time Dependent Pert.

Lecture 53 | Sudden Approximation in Time Dependent Perturbation| Transition Probability Derivation

Lecture 52 | Adiabatic Approximation & Adiabatic Theorem Derivation | Time Dependent Perturbation

Lecture 51 | Derivation of Transition Probability in Adiabatic and Sudden Approximation

Lecture 50 | Transition Rate and Transition into a Continuum State

Lecture 45 | Introduction to Time Dependent Perturbation | Derivation of Dyson Series

Lecture 49 | Calculation of Transition Probability in Harmonic Perturbation | Time Dependent Pert.

Lecture 48 | Fermi Golden Rule | Transition into a continuum state | Time-Dependent Perturbation

Lecture 47 | Transition Probability for constant perturbation

Lecture 46 | Deriving the Transition Probability Formula | Time-Dependent Perturbation Theory

Lecture 44 | Interaction Picture Or Dirac Picture in Quantum Mechanics

Lecture 43 | Understanding the Heisenberg Picture | State Vectors, Operators & Equation of Motion

Lecture 42 | Schrodinger Pictures | Introduction to different pictures in quantum mechanics

Lecture 57 | Radiation Reaction & the Abraham-Lorentz Force | Derivation from Larmor Formula

Lecture 56 | Deriving Synchrotron Radiation Power Using Liénard's Generalized Larmor Formula

Lecture 55 | Derivation of Bremsstrahlung Radiation Power | Using Liénard's Generalization of Larmo

Lecture 54 | Lienard's Generalisation of Larmor's Formula

Lecture 53 | Derivation of Larmor Formula

Lecture 52 | Radiation From Arbitrary Source Part (B)

Lecture 51 | Radiation From Arbitrary Source Part (A)

Lecture 50 | Magnetic Dipole Radiation Part(B)

Lecture 49 | Magnetic Dipole Radiation Part(A)

Lecture 48 | Electric Dipole Radiation Part (C)

Lecture 47 | Electric Dipole Radiation Part (B)

Lecture 46 | Calculation of Scalar Potential | Electric Dipole Radiation Part (A)

Lecture 45 | What is Radiation ?

Lecture 41 | Solved Quantum Mechanics Problem | Two Spin-1/2 Particles in 1D Box with Delta Perturb

Lecture 40 | Quantum Tunneling Explained | Proton Penetration into a Nucleus 🚀

Lecture 39 | Ground State Energy in Harmonic Potential using Variational and WKB Methods