Stanford Root

Schedule

Stanford Root

Schedule

PHYSICS 360

Modern Astrophysics

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

Basic theory of production of radiation in stars, galaxies and diffuse interstellar and intergalactic media and and transfer of radiation throughout the universe. Magnetic fields, turbulence shocks and particle acceleration and transport around magnetospheres of planets to clusters of galaxies. Application to compact objects, pulsars and accretion in binary stars and super-massive black holes, supernova remnants, cosmic rays and active galactic nuclei

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 27117
0 / 20 enrolled
DAYS:Monday, Wednesday
TIME:1:30 PM – 2:50 PM
LOCATION:TBD
INSTRUCTOR:
Blandford, Roger
3units

PHYSICS 360: Modern Astrophysics

3 units · Letter or Credit/No Credit

Basic theory of production of radiation in stars, galaxies and diffuse interstellar and intergalactic media and and transfer of radiation throughout the universe. Magnetic fields, turbulence shocks and particle acceleration and transport around magnetospheres of planets to clusters of galaxies. Application to compact objects, pulsars and accretion in binary stars and super-massive black holes, supernova remnants, cosmic rays and active galactic nuclei

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — Monday Wednesday 1:30 PM – 2:50 PM — Blandford, Roger (Graduate)

More PHYSICS courses

  • PHYSICS 301: Graduate Observational Astrophysics
  • PHYSICS 302: Department Colloquium
  • PHYSICS 330: Quantum Field Theory I
  • PHYSICS 331: Quantum Field Theory II
  • PHYSICS 332: Quantum Field Theory III
  • PHYSICS 352: Physics Beyond the Standard Model of Particle Physics
  • PHYSICS 361: Cosmology and Extragalactic Astrophysics
  • PHYSICS 362: The Early Universe
  • PHYSICS 363: Radiative Processes in Astrophysics
  • PHYSICS 364: Black Holes
  • PHYSICS 367: Special Topics in Astrophysics: Astrophysical Data Analysis with the Rubin Observatory
  • PHYSICS 368: High Energy Astrophysics and Stellar Evolution

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