- Code ASTR8008
- Unit Value 6 units
- Offered by Research School of Astronomy and Astrophysics
- ANU College ANU Joint Colleges of Science
- Course subject Astronomy and Astrophysics
- Areas of interest Astronomy and Astrophysics
- Academic career PGRD
- Prof Mark Krumholz
- Mode of delivery In Person
First Semester 2018
See Future Offerings
This course is usually offered every even year (eg 2018)
This course is offered as part of the new Master of Astronomy and Astrophysics (Advanced) program. It covers the basics of star formation and the transition to planet formation. The course provides an initial survey of the physical processes that govern star-forming clouds, including magnetohydrodyanmic turbulence, gravitational instability, non-ideal MHD effects, and radiative transfer by molecules and dust grains. It then covers the star formation process starting at galactic scales and working down to the scales of individual stars and their disks, touching on topics including: star formation laws; molecular cloud formation, evolution, and disruption; collapse, fragmentation, and the origin of the initial mass function; protostellar disks and outflows; pre-main sequence stellar evolution; massive stars and feedback; and the dispersal of disks and the onset of planet formation.
Upon successful completion, students will have the knowledge and skills to:On satisfying the requirements of this course, students will:
- Understand and examine the physical processes – magnetohydrodynamics, gravity, radiation, and chemistry – that govern the process of star formation.
- Be able to describe and apply the observational phenomenology of, and observational techniques used to study star formation.
- Understand, be able to describe and critically examine the major theoretical models for star formation at scales from galaxies to single stars.
Indicative Assessment5 x assignments each worth 20%. Related to learning outcomes 1-3. Some bonus points for oral presentations and participation in class discussions.
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Workload10 hours per week consisting of 4 hours of lectures and tutorials and 6 hours of work on assignments.
Requisite and Incompatibility
Prescribed TextsNotes on Star Formation, Krumholz, M., Open Astrophysics Bookshelf, 2015
Preliminary ReadingNone specified
Assumed KnowledgeBachelor of Science or equivalent with a major in physics or mathematics with relevant experience or academic achievement. Students should have basic familiarity with computer programming.
Tuition fees are for the academic year indicated at the top of the page.
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- Student Contribution Band:
- Unit value:
- 6 units
If you are an undergraduate student and have been offered a Commonwealth supported place, your fees are set by the Australian Government for each course. At ANU 1 EFTSL is 48 units (normally 8 x 6-unit courses). You can find your student contribution amount for each course at Fees. Where there is a unit range displayed for this course, not all unit options below may be available.
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Offerings, Dates and Class Summary Links
ANU utilises MyTimetable to enable students to view the timetable for their enrolled courses, browse, then self-allocate to small teaching activities / tutorials so they can better plan their time. Find out more on the Timetable webpage.
Class summaries, if available, can be accessed by clicking on the View link for the relevant class number.
|Class number||Class start date||Last day to enrol||Census date||Class end date||Mode Of Delivery||Class Summary|
|4855||19 Feb 2018||27 Feb 2018||31 Mar 2018||25 May 2018||In Person||N/A|