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== pYL703 : Electronic properties of Materials ==
== pYL703 : Electronic properties of Materials ==
Overlap with : PYL102 Drude and Sommerfeld theory of metals, Periodic Potential, Bloch's theorem, Kronig-Penney Model and Origin of bands, example of real band structure, Ferromagnetism, Molecular field theory, Exchange interactions, Band theory of ferromagnetism, Ferrimagnetism, Ferrites, Molecular field theory for ferrimagnets, Magnetic Domains, Type of Domain walls, Structure of domain walls, Soft and Hard magnetic materials, Spin waves, Magnon dispersion relation, Introduction to nanomagnetism, Dielectric constants of solids and liquids, Claussius-Mossoti relation, dielectric dispersion and losses, piezo, ferro- and pyroelectricity, Optical constants, atomistic theory of optical properties, quantum mechanical treatment, band transitions, dispersion, plasma oscillations and excitons.
Overlap with : [[PYL102]] Drude and Sommerfeld theory of metals, Periodic Potential, Bloch's theorem, Kronig-Penney Model and Origin of bands, example of real band structure, Ferromagnetism, Molecular field theory, Exchange interactions, Band theory of ferromagnetism, Ferrimagnetism, Ferrites, Molecular field theory for ferrimagnets, Magnetic Domains, Type of Domain walls, Structure of domain walls, Soft and Hard magnetic materials, Spin waves, Magnon dispersion relation, Introduction to nanomagnetism, Dielectric constants of solids and liquids, Claussius-Mossoti relation, dielectric dispersion and losses, piezo, ferro- and pyroelectricity, Optical constants, atomistic theory of optical properties, quantum mechanical treatment, band transitions, dispersion, plasma oscillations and excitons.

Latest revision as of 16:44, 14 April 2026

pYL703
Electronic properties of Materials
Credits 3
Structure 3-0-0
Pre-requisites
Overlaps

pYL703 : Electronic properties of Materials

Overlap with : PYL102 Drude and Sommerfeld theory of metals, Periodic Potential, Bloch's theorem, Kronig-Penney Model and Origin of bands, example of real band structure, Ferromagnetism, Molecular field theory, Exchange interactions, Band theory of ferromagnetism, Ferrimagnetism, Ferrites, Molecular field theory for ferrimagnets, Magnetic Domains, Type of Domain walls, Structure of domain walls, Soft and Hard magnetic materials, Spin waves, Magnon dispersion relation, Introduction to nanomagnetism, Dielectric constants of solids and liquids, Claussius-Mossoti relation, dielectric dispersion and losses, piezo, ferro- and pyroelectricity, Optical constants, atomistic theory of optical properties, quantum mechanical treatment, band transitions, dispersion, plasma oscillations and excitons.