Introduction - the phenomena of quantum mechanics; mathematical prerequisites; the formulation of quantum mechanics; kinematics and dynamics; coordinate representation and applications; momentum representation and applications; the harmonic oscillator; angular momentum; state representation and determination; measurement and the interpretation of states; formation of bound states; charged particle in a magnetic field; time-dependent phenomena; discrete symmetries; the classical limit; phase-space quantum mechanics; scattering; identical particles; many-fermion systems; quantum mechanics of the electromagnetic field; Bell's theorem and its consequences.
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