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Not teaching in Spring 2026 | |||||
PHYS 5322 Roderick Heelis | |||||
A- | |||||
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Not teaching in Spring 2026 | |||||
PHYS 5322 Roderick Heelis | |||||
A- | |||||

Grades: 33
Median GPA: A-
Mean GPA: 3.455
0
Ratings given
Electromagnetism II
PHYS 5322
School of Natural Sciences and Mathematics
Fields and potentials, Gauge transformations and the wave equation. Electromagnetic waves in unbounded media - non-dispersive and dispersive media. Boundary conditions at interfaces. Solutions to the wave equation in rectangular cylindrical and spherical coordinates. Electromagnetic waves in bonded media - waveguides and resonant cavities. Radiating systems - electric and magnetic dipole radiation, electric quadruple radiation. Fundamentals of scattering and scalar diffraction. Lorentz transformation and covariant forms for Maxwell's equations. Radiation from moving charges - Synchrotron, Cherenkov and Bremstrahlung Radiation. 3 credit hours.
Prerequisite: PHYS 5320 or equivalent.
Offering Frequency: Each year
Grades: 115
Median GPA: A-
Mean GPA: 3.457
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Grades: 33
Median GPA: A-
Mean GPA: 3.455
0
Ratings given
Electromagnetism II
PHYS 5322
School of Natural Sciences and Mathematics
Fields and potentials, Gauge transformations and the wave equation. Electromagnetic waves in unbounded media - non-dispersive and dispersive media. Boundary conditions at interfaces. Solutions to the wave equation in rectangular cylindrical and spherical coordinates. Electromagnetic waves in bonded media - waveguides and resonant cavities. Radiating systems - electric and magnetic dipole radiation, electric quadruple radiation. Fundamentals of scattering and scalar diffraction. Lorentz transformation and covariant forms for Maxwell's equations. Radiation from moving charges - Synchrotron, Cherenkov and Bremstrahlung Radiation. 3 credit hours.
Prerequisite: PHYS 5320 or equivalent.
Offering Frequency: Each year
Grades: 115
Median GPA: A-
Mean GPA: 3.457
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