MajorUndergraduate

ASTROPHY05 Astrophysics

Faculty of Science

Astrophysics (ASTROPHY05) is a major worth 48 credit points, listing 23 units, taught at Clayton. It is offered in 12 courses, including Bachelor of Commerce and Bachelor of Science; and Bachelor of Education (Honours) and Bachelor of Science.

Credit points
48
Units
23
Campus
Clayton
Offered in
12 courses

This is the 2020 handbook entry. See the 2026 entry.

Reviews

No reviews yet

No reviews yet. Be the first to review ASTROPHY05.

Requisite map

Overview

Astrophysics is the science that endeavours to understand the universe and its contents through observations and the applications of physical laws. The phenomena we seek to explain include the distribution of matter on the largest scales, and the nature and behaviour of celestial objects; these objects include galaxies and quasars, stars and planets, comets, pulsars and black holes. Astrophysics links the smallest and largest objects in the universe, from cosmic rays to super clusters of galaxies. The subject deals with big questions, such as the ultimate fate of the universe and the possibility of extra-terrestrial life. We address these questions by using theory, observations made with the largest telescopes and calculations done on the world's largest supercomputers. Astronomical observations are made using a multitude of different telescopes located around the globe and in space. These telescopes gather data from across the entire electromagnetic spectrum.

Monash is home to world-leading experts in observational and theoretical astrophysics, whose expertise contributes directly to the content of the undergraduate astrophysics program. The program will introduce you to all of the skills and tools required in modern astronomy and astrophysics, from observing with sophisticated telescopes to the development of numerical codes for supercomputers. We are also developing new ways of teaching physics and astronomy. At first year this centres on the Physics and Astronomy Collaborative-learning Environment (PACE). First year classes are held in the PACE Studios which are custom-designed to encourage independent learning, and to promote the problem solving, effective communication and teamwork highly valued by employers. We are forging a community of students who are proactive learners, able to apply their knowledge and skills in creative ways.

Modern astrophysics draws heavily on physics, mathematics, computation and numerical analysis, and the Monash astrophysics program provides excellent training in both contemporary science and cutting-edge problem-solving. So our graduates find work in areas that require analytical people with highly developed problem-solving skills; this includes government, finance, business, private industry, science journalism and teaching, as well as research laboratories, universities and planetariums. For those who wish to pursue studies beyond their undergraduate degree, our postgraduate program can equip those who intend to pursue a professional career in astronomy or astrophysics.

Availability

Astrophysics is listed in S2000 Bachelor of Science, S3001 Bachelor of Science Advanced - Global Challenges (Honours) and S3002 Bachelor of Science Advanced - Research (Honours) at Clayton as a major, extended major or minor.

Structure

Mathematics requirement12 credit points
This major relies on successful completion of MTH1030 and MTH2010 at a set level (60 or higher); if you are unable to meet the published marks for these two units, you may not be able to complete the major.
Supporting studies in Mathematics18 credit points
Astrophysics is an area of study that benefits from supporting studies in Mathematics. This entry lists the requirements of the minor and the mathematics supporting studies required for progression in Astrophysics.
Level 1 units12 credit points
You must complete 6 credit points from the core units and 6 credit points from one of the additional options below. Note: Your choice will depend on your physics and mathematics background and interests. Refer to individual units for prerequisites.

Core unit

6 credit points

Core option 2

6 credit points
You may complete one of the following units. Note: ASP1010 and ASP1022 are taught as descriptive units with an emphasis on conceptual understanding. They are accessible to students without any specific background in science or mathematics. These units do not constitute a level one approved Science sequence. ASP1010 is strongly recommended as an elective unit for students who intend to major in astrophysics.
Level 2 units12 credit points
You must complete the following units. Note: You must complete MTH2010 and MTH2032 prior to enrolling in level 3 astrophysics units.
Level 3 units18 credit points
Astrophysics elective units6 credit points
You must complete 6 credit points from the level 3 units listed above or from the following elective options.

Elective option 1

6 credit points
You may complete one of the following units. Note: PHS2360 requires additional prerequisites. Enrolment in a research project unit requires achievement in a minimum set of units and permission of the unit coordinator.

Elective option 2

6 credit points
You may complete one of the following units. Note: PHS3360 requires additional prerequisites. Enrolment in a research project unit requires achievement in a minimum set of units and permission of the unit coordinator.
Progression to Honours24 credit points
Progression to honours requires completion of 24 credit points of relevant level 3 units.

Courses that offer it

Notes

Requirements for progressing to honours and other further studies

You must meet the entry requirements for S3701 Bachelor of Science (Honours), M5021 Graduate Diploma of Health and Science Research or meet the progression requirements to the fourth year of S3002 Bachelor of Science Advanced - Research (Honours).

You must also complete prerequisite study as per the intended discipline. Refer to the honours prerequisites table.

Learning outcomes

In addition to achieving the broad outcomes of your course, and successfully completing this area of study, you will be able to:
  1. 1

    Explain how knowledge in astrophysics is constructed as part of continually evolving conceptual frameworks developed from observation, mathematical analysis and numerical modelling, and built around a core of unifying fundamental concepts

  2. 2

    Appreciate astrophysics as a creative, social endeavour which provides intellectual pleasure and contributes to society and its development through applications to past, current and future technologies

  3. 3

    Demonstrate the effective use of specialised astronomical equipment, including telescopes and their instrumentation

  4. 4

    Demonstrate experimental, numerical, computational, analytical, and problem solving skills required to gain employment in a wide variety of industries or to undertake further learning in astronomy and astrophysics related disciplines

Contacts

Academic Coordinators
Dr Jasmina Lazendic-Galloway
Dr Daniel Price
Associate Professor Michael Brown

Common questions

Major details

Type
Major
Study level
Undergraduate
Credit points
48
Faculty
Faculty of Science
Organisational unit
School of Physics and Astronomy
Handbook years
2020202120222023202420252026