Introduces key quantum physics concepts such as commutators, observables, and the Schrödinger equation, emphasizing the importance of diagonalization and energy eigenvalues.
Introduces the bra-ket formalism, states, wave functions, and Hermitian operators, exploring the correspondence principle between classical and quantum mechanics.
Covers quantum mechanics exercises on spatial interference and coupling between oscillators, emphasizing independent problem-solving and the implications of measurement in quantum systems.