Principles of Condensed Matter Physics

Video Lectures

Displaying all 58 video lectures.
I. Symmetry, Physical Properties of Crystals, & Diffraction
Lecture 1
Principles of Condensed Matter Physics
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Principles of Condensed Matter Physics
Lecture 2
Symmetry in Perfect Solids
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Symmetry in Perfect Solids
Lecture 3
Symmetry in Perfect Solids (Continued)
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Symmetry in Perfect Solids (Continued)
Lecture 4
Diffraction Methods For Crystal Structures
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Diffraction Methods For Crystal Structures
Lecture 5
Diffraction Methods For Crystal Structures (Continued)
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Diffraction Methods For Crystal Structures (Continued)
Lecture 6
Diffraction Methods For Crystal Structures: Worked Examples
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Diffraction Methods For Crystal Structures: Worked Examples
Lecture 7
Physical Properties of Crystals
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Physical Properties of Crystals
Lecture 8
Physical Properties of Crystals (Continued)
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Physical Properties of Crystals (Continued)
Lecture 9
Physical Properties of Crystals: Worked Examples
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Physical Properties of Crystals: Worked Examples
Lecture 10
Cohesion in Solids
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Cohesion in Solids
Lecture 11
Cohesion in Solids: Worked Examples
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Cohesion in Solids: Worked Examples
II. The Free Electron Model & Thermal Conductivity
Lecture 12
The Free-Electron Theory of Metals
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The Free-Electron Theory of Metals
Lecture 13
The Free-Electron Theory of Metals: Worked Examples
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The Free-Electron Theory of Metals: Worked Examples
Lecture 14
The Free-Electron Theory of Metals: Electrical Conductivity
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The Free-Electron Theory of Metals: Electrical Conductivity
Lecture 15
The Free-Electron Theory of Metals - Electrical Conductivity - Worked Examples
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The Free-Electron Theory of Metals - Electrical Conductivity - Worked Examples
Lecture 16
Thermal Conductivity of Metals
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Thermal Conductivity of Metals
Lecture 17
Thermal Conductivity of Metals: Worked Examples
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Thermal Conductivity of Metals: Worked Examples
III. Crystal Lattice Vibrations, Phonons, & Debye Model
Lecture 18
The Concept of Phonons
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The Concept of Phonons
Lecture 19
Debye Theory of Specific Heat, Lattice Vibrations
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Debye Theory of Specific Heat, Lattice Vibrations
Lecture 20
Debye Theory of Specific Heat, Lattice Vibrations: Worked Examples
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Debye Theory of Specific Heat, Lattice Vibrations: Worked Examples
Lecture 21
Lattice Vibrations & Phonon Thermal Conductivity
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Lattice Vibrations & Phonon Thermal Conductivity
Lecture 22
Lattice Vibrations (Continued) Phonon Thermal Conductivity - Worked Examples
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Lattice Vibrations (Continued) Phonon Thermal Conductivity - Worked Examples
Lecture 23
Anharmonicity and Thermal Expansion
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Anharmonicity and Thermal Expansion
IV. Dielectric Solids & Polarization
Lecture 24
Dielectric (Insulating) Solids
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Dielectric (Insulating) Solids
Lecture 25
Dispersion and Absorption of Electromagnetic Waves in Dielectric Media, Ferro
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Dispersion and Absorption of Electromagnetic Waves in Dielectric Media, Ferro
Lecture 26
Optical Properties of Metals; Ionic Polarization in Alkali Halides; Piezoelectricity
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Optical Properties of Metals; Ionic Polarization in Alkali Halides; Piezoelectricity
Lecture 27
Dielectric Solids: Worked Examples
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Dielectric Solids: Worked Examples
V. Diamagnetism and Paramagnetism
Lecture 28
Dia - and Paramagnetism
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Dia - and Paramagnetism
Lecture 29
Paramagnetism of Transition Metal and Rare Earth Ions
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Paramagnetism of Transition Metal and Rare Earth Ions
Lecture 30
Quenching of Orbital Angular Momentum; Ferromagnetism
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Quenching of Orbital Angular Momentum; Ferromagnetism
Lecture 31
Exchange Interactions, Magnetic Order, Neutron Diffraction
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Exchange Interactions, Magnetic Order, Neutron Diffraction
Lecture 32
Hysteresis and Magnetic Domains; Spin Waves and Magnons
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Hysteresis and Magnetic Domains; Spin Waves and Magnons
Lecture 33
Magnetic Resonance
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Magnetic Resonance
Lecture 34
Magnetism and Magnetic Resonance: Worked Examples
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Magnetism and Magnetic Resonance: Worked Examples
Lecture 35
Magnetism: Worked Examples (Continued)
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Magnetism: Worked Examples (Continued)
Lecture 36
Pauli Paramagnetism and Landau Diamagnetism
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Pauli Paramagnetism and Landau Diamagnetism
Lecture 37
Band Magnetism; Itinerant Electrons; Stoner Model
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Band Magnetism; Itinerant Electrons; Stoner Model
VI. Superconductivity
Lecture 38
Superconductivity: Perfect Electrical Conductivity and Perfect Diamagnetism
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Superconductivity: Perfect Electrical Conductivity and Perfect Diamagnetism
Lecture 39
Type I and Type II Superconductors
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Type I and Type II Superconductors
Lecture 40
Ginsburg - Landau Theory, Flux Quantization
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Ginsburg - Landau Theory, Flux Quantization
Lecture 41
Cooper Pairs
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Cooper Pairs
Lecture 42
Microscopic (BCS) Theory of Superconductivity
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Microscopic (BCS) Theory of Superconductivity
Lecture 43
BCS Theory (Continued): Josephson Tunneling: Quantum Interference
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BCS Theory (Continued): Josephson Tunneling: Quantum Interference
Lecture 44
Josephson Effect (Continued); High Temperature Superconductors
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Josephson Effect (Continued); High Temperature Superconductors
Lecture 45
Superconductors: Worked Examples
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Superconductors: Worked Examples
VII. Semiconductors & Noncrystalline Solids
Lecture 46
Energy Bands in Solids
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Energy Bands in Solids
Lecture 47
Electron Dynamics in a Periodic Solid
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Electron Dynamics in a Periodic Solid
Lecture 48
Semiconductors
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Semiconductors
Lecture 49
Semiconductors (Continued)
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Semiconductors (Continued)
Lecture 50
Semiconductors: Worked Examples
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Semiconductors: Worked Examples
Lecture 51
Defects in Solids: Point Defects
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Defects in Solids: Point Defects
Lecture 52
Point Defects in Solids: Worked Examples
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Point Defects in Solids: Worked Examples
Lecture 53
Defects in Solids: Line and Surface Defects
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Defects in Solids: Line and Surface Defects
Lecture 54
Dislocations in Solids: Worked Examples
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Dislocations in Solids: Worked Examples
Lecture 55
Symmetry in Perfect Solids: Worked Examples
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Symmetry in Perfect Solids: Worked Examples
Lecture 56
Quantum Fluids and Quantum Solids
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Quantum Fluids and Quantum Solids
Lecture 57
Quantum Liquids and Quantum Solids: Worked Examples
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Quantum Liquids and Quantum Solids: Worked Examples
Lecture 58
Epilogue & Course Summary
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Epilogue & Course Summary