Astronomy
17 courses found
A study of the night sky primarily for non-science majors. Provides a brief history of astronomy through Newton. Topics include the properties of the sun, earth, moon, planets, asteroids, meteors and comets; origin and evolution of the solar system; life in the universe; and recent results from space missions and ground-based telescopes.
A study of stars, star formation, and evolution primarily for non-science majors. Topics include light, atoms, and modern observing technologies; origin of the chemical elements; supernovae, pulsars, neutron stars, and black holes; structure and evolution of our galaxy; nature of other galaxies; active galaxies and quasars; expanding universe, cosmology, the big bang, and the early universe.
An independent laboratory class for non-science majors, meeting at night, in which students learn how to observe the night sky, use a telescope, and take digital images of the sky. Students work individually or in small groups on observational projects that focus on the study of constellations, planets, stars, nebulae, and galaxies using binoculars, 8-inch telescopes, and imaging equipment at the department's student observatory.
Primarily for science majors. A thorough discussion of the basic concepts and methods of solar system, stellar, galactic, and extragalactic astronomy and astrophysics with an emphasis on physical principles. Recommended prerequisite/corequisite: MATH 1210 or 1310, PHYS 1420 or 1425, or instructor permission.
This course provides an overview of the origins of the elements through cosmic history. The course is taught chronologically, starting from the Big Bang and leading up to life as we know it. The course will cover a wide variety of topics, such as the formation of the first stars, galaxies, and the lifecycle of the interstellar medium. We will also study how material is re-incorporated into modern day stars, planets, and eventually life.
This course introduces communication skills for scientists who need to engage with diverse audiences beyond their immediate research community by teaching practical tools for grant writing, peer review, policy briefings, media interviews, and public engagement, with emphasis on ethical communication practices and professional responsibility.
Open to non-science students. Investigates controversial topics in science and pseudo-science from the astronomer's perspective. Analyzes methods of science and the nature of scientific evidence, and their implications for unresolved astrophysical problems. Topics include extraterrestrial life, UFO's, astrology, the Moon landing, and others.
The course explores the formation, evolution, and properties of galaxies. Topics include: the structure of galaxies; galaxy demographics; star motions and populations; nuclear black holes; galaxy interactions; dark matter halos; the distribution of the elements; and the formation and evolution of galaxies. The course is divided equally between lecture material and project-driven worksheets.
Basic concepts in mechanics, statistical physics, atomic and nuclear structure, and radiative transfer are developed and applied to selected fundamental problems in the areas of stellar structure, stellar atmospheres, the interstellar medium, and extragalactic astrophysics. Prerequisite: ASTR 2110, 2120 (recommended); MATH 4220; PHYS 3210, 3310 (concurrent), 3340, 3430 (concurrent), 3650; or instructor permission.
Independent study of a topic of special interest to the student under individual supervision by a faculty member. May be repeated once for credit. Prerequisite: Instructor permission.
May be repeated once for credit. Prerequisite: Instructor permission.
An introduction to the basic physics of astronomy and astrophysics organized around learning physical principles and applying them to astrophysical objects. Physics covered will be chosen from fluid mechanics, radiative transfer, statistical mechanics, classical and quantum radiation processes, and quantum mechanics of atomic and molecular structure. This graduate course will involve more complex and difficult assignments than ASTR 4810. Prerequisite: Instructor Permission.
This interdisciplinary course will introduce advanced undergraduates and graduates to molecules and their chemistry in different sources throughout the universe. Topics include gas-phase and grain-surface reactions, astronomical spectroscopy, laboratory experiments, and astrochemical modeling.Prerequisite: There are no formal prerequisites, but some knowledge of chemical kinetics, spectroscopy, and/or the interstellar medium will be helpful.
Studies the fundamentals of measuring power and power spectra, antennas, interferometers, and radiometers. Topics include thermal radiation, synchrotron radiation, and line frequency radiation; and radio emission from the planets, sun, flare stars, pulsars, supernovae, interstellar gas, galaxies, and quasi-stellar sources.
This course provides an overview of extragalactic astronomy. Topics include both qualitative and quantitative discussion of various types of galaxy (ellipticals, spirals, dwarf, starburst); results from theory of stellar dynamics; groups and clusters of galaxies; active galaxies; high-redshift galaxies; galaxy evolution; the intergalactic medium; and dark matter. The course is intended for advanced undergraduate astrophysics majors and first and second year graduate students. Prerequisite: Physics and Math through PHYS 2610, MATH 3250 (or equivalent); ASTR 2110, 2120 (or equivalent).
Under supervision, the student undertakes or assists with a current research problem. This course may be repeated for credit.
For doctoral dissertation, taken under the supervision of a dissertation director.