Quantum EigenfunctionsCovers quantum eigenfunctions and the importance of A and B commuting for the same set of eigenfunctions.
Postulates of Quantum MechanicsExplores the postulates of Quantum Mechanics, emphasizing the state of a system as a complex-valued vector in a Hilbert space.
Quantum Physics IExplores Hamiltonians, Schrodinger equations, composite systems, and quantum measurements in a foundational quantum physics context.
Quantum Field Theory: AQFTCovers Advanced Quantum Field Theory with a focus on spinors, wave functions, rotations, and constraints.
Quantum Mechanics BasicsCovers the basics of quantum mechanics, focusing on Hamiltonian operator and Schrödinger equations.
Quantum Mechanics: MeasurementCovers the postulates of quantum mechanics, measurement, collapse of the wave function, qubits, and quantum computing processes.
Linear Algebra: Quantum MechanicsExplores the application of linear algebra in quantum mechanics, emphasizing vector spaces, Hilbert spaces, and the spectral theorem.