Courses in Stud.IP

current semester
zur Veranstaltung in Stud.IP Studip_icon
Werkstoffe der Elektrotechnik (VL)
Untertitel:
Diese Lehrveranstaltung ist Teil des Moduls: Werkstoffe der Elektrotechnik
Semester:
SoSe 24
Veranstaltungstyp:
Vorlesung (Lehre)
Veranstaltungsnummer:
lv685_s24
DozentIn:
Prof. Dr. Manfred Eich, Maurice Pfeiffer
Beschreibung:

The Hamiltonian approach to classical mechanics. Analysis of a simple oscillator.
Analysis of vibrations in a one-dimensional lattice.
Phononic bandgap
Introduction to quantum mechanics
Wave function, Schrödinger’s equation, observables and measurements.
Quantum mechanical harmonic oscillator and spectral decomposition.
Symmetries, conserved quantities, and the labeling of states.
Angular momentum
The hydrogen atom
Waves in periodic potentials
Reciprocal lattice and reciprocal lattice vectors
Band gap
Band diagrams
The free electron gas and the density of states
Fermi-Dirac distribution
Density of charge carriers in semiconductors
Conductivity in semiconductors. Engineering conductivity through doping.
The P-N junction (diode)
Light emitting diodes
Electromagnetic waves interacting with materials
Reflection and refraction
Photonic band gaps
Origins of magnetization
Hysteresis in ferromagnetic materials
Magnetic domains

Leistungsnachweis:
310 - Werkstoffe der Elektrotechnik<ul><li>310 - Werkstoffe der Elektrotechnik: Klausur schriftlich</li></ul>
ECTS-Kreditpunkte:
3
Weitere Informationen aus Stud.IP zu dieser Veranstaltung
Heimatinstitut: Institut für Optische und Elektronische Materialien (E-12)
In Stud.IP angemeldete Teilnehmer: 47
Anzahl der Dokumente im Stud.IP-Downloadbereich: 1
former semester
zur Veranstaltung in Stud.IP Studip_icon
Werkstoffe der Elektrotechnik (VL)
Untertitel:
Diese Lehrveranstaltung ist Teil des Moduls: Werkstoffe der Elektrotechnik
Semester:
SoSe 24
Veranstaltungstyp:
Vorlesung (Lehre)
Veranstaltungsnummer:
lv685_s24
DozentIn:
Prof. Dr. Manfred Eich, Maurice Pfeiffer
Beschreibung:

The Hamiltonian approach to classical mechanics. Analysis of a simple oscillator.
Analysis of vibrations in a one-dimensional lattice.
Phononic bandgap
Introduction to quantum mechanics
Wave function, Schrödinger’s equation, observables and measurements.
Quantum mechanical harmonic oscillator and spectral decomposition.
Symmetries, conserved quantities, and the labeling of states.
Angular momentum
The hydrogen atom
Waves in periodic potentials
Reciprocal lattice and reciprocal lattice vectors
Band gap
Band diagrams
The free electron gas and the density of states
Fermi-Dirac distribution
Density of charge carriers in semiconductors
Conductivity in semiconductors. Engineering conductivity through doping.
The P-N junction (diode)
Light emitting diodes
Electromagnetic waves interacting with materials
Reflection and refraction
Photonic band gaps
Origins of magnetization
Hysteresis in ferromagnetic materials
Magnetic domains

Leistungsnachweis:
310 - Werkstoffe der Elektrotechnik<ul><li>310 - Werkstoffe der Elektrotechnik: Klausur schriftlich</li></ul>
ECTS-Kreditpunkte:
3
Weitere Informationen aus Stud.IP zu dieser Veranstaltung
Heimatinstitut: Institut für Optische und Elektronische Materialien (E-12)
In Stud.IP angemeldete Teilnehmer: 47
Anzahl der Dokumente im Stud.IP-Downloadbereich: 1

Courses

For information on courses and modules, please refer to the current course catalogue and module manual of your degree programme.

Module / Course Period ECTS Credit Points
Module: Electrical Power Systems I: Introduction to Electrical Power Systems WiSe 6
Module: Electrical Power Systems II: Operation and Information Systems of Electrical Power Grids WiSe 6
Module: Electrical Power Systems III: Dynamics and Stability of Electrical Power Systems SuSe 6
Module: Electrical Engineering II: Alternating Current Networks and Basic Devices SuSe 6
Module: Electrical Engineering Project Laboratory SuSe 6
Module: Process Measurement Engineering SuSe 4
Module: Smart Grid Technologies WiSe, SuSe 6

Course: Seminar on Electromagnetic Compatibility and Electrical Power Systems

Further Information

WiSe, SuSe 2

SuSe: Summer Semester
WiSe: Winter Semester