Ron Reifenberger

Purdue PHYS 342: Modern Physics L6.4: Hydrogen Atom: Radiative Atomic Transitions

Purdue PHYS 342 L2.4: Schrödinger Equation in 1D: A Free Particle

Purdue PHYS 342 L4.1: Heisenberg's Uncertainty: Scattering of Matter-Waves from a Step Potential

Purdue PHYS 342 L2.2: Schrödinger Equation in 1D: 1D Equation to Describe de Broglie 'Matter Waves'

Purdue PHYS 342: Modern Physics L6.2: Hydrogen Atom: Angular Momentum Operators

Purdue PHYS 342 L2.7: Schrödinger Equation in 1D: 1D Quantum Harmonic Oscillator Potential

Purdue PHYS 342: Modern Physics L5.5: Schrödinger Equation and Hydrogen: Eigenfunctions

Purdue PHYS 342 L10.4: Crystalline Solids: Defining the Reciprocal Lattice

Purdue PHYS 342 L14.1: Relativistic Kinematics: Compton Scattering

Purdue PHYS 342: Modern Physics L5.4: Schrödinger Equation and Hydrogen: Separation of Variables

Purdue PHYS 342 L1.2: Classical Models: Classical Concepts - Review of Particles and Waves

Purdue PHYS 342 L9.5: Statistical Laws of Nature: The Partition Function

Purdue PHYS 342 L4.4: Heisenberg's Uncertainty: The Fourier Integral

Purdue PHYS 342: Modern Physics L6.6: Hydrogen Atom: Allowed Transitions, Selection Rules and Lasers

Purdue PHYS 342 L1.5: Classical Models: Discrete Line Spectra and Bohr’s Model

Purdue PHYS 342 L10.2: Crystalline Solids: Unit Cells and Miller Indices

Purdue PHYS 342 L4.3: Heisenberg's Uncertainty: Fourier Series

Purdue PHYS 342 L15.2: Nuclear Structure and Decay: The Strong Force

Purdue PHYS 342 L12.2: Special Relativity-Introduction: Measuring the Speed of Light

Purdue PHYS 342 L2.6: Schrödinger Equation in 1D: The Finite Square Well

Purdue PHYS 342 L7.1: Pauli's Exclusion Principle: Orbital Magnetic Moments

Purdue PHYS 342 L15.4: Nuclear Structure and Decay: Nuclear Decay

Purdue PHYS 342 L2.5: Schrödinger Equation in 1D: 1D Infinite Square Well

Purdue PHYS 342 L15.6: Nuclear Structure and Decay: Mathematics of Radioactive Decay

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