Handbook home
Laboratory and Computational Physics 2 (PHYC20013)
Undergraduate level 2Points: 12.5Dual-Delivery (Parkville)
Please refer to the return to campus page for more information on these delivery modes and students who can enrol in each mode based on their location.
About this subject
- Overview
- Eligibility and requirements
- Assessment
- Dates and times
- Further information
- Timetable(opens in new window)
Contact information
Semester 1
Semester 2
Overview
Availability | Semester 1 - Dual-Delivery Semester 2 - Dual-Delivery |
---|---|
Fees | Look up fees |
This subject introduces students to the use of computational techniques in the investigation of problems in physics and develops students' skills in experimental physics within areas of optics, acoustics, electromagnetism, classical nuclear and quantum physics. Students will develop programming skills and learn a range of numerical methods commonly used in physics research.
Intended learning outcomes
Students completing this subject should be able to:
- apply critical reasoning to the evaluation of experimental data and sources of experimental uncertainty;
- use experimental log books effectively; and
- present clearly the results of experimental work;
- construct computer programs that implement algorithms for the solution of problems in physics and the modeling of experimental data;
- apply elementary computational techniques such as finite difference approximations, root finding, quadrature, numerical solutions of ordinary differential equations and discrete Fourier series to physical problems.
Generic skills
A student who completes this subject should be able to:
- Explain their understanding of physics principles and applications lucidly, both in writing and orally;
- Describe the experimental and observational basis of the physical principles presented in the subject, both in writing and orally;
- Express mathematical descriptions of physical processes in a form accessible to numerical computation;
- Participate as an effective member of a group in tutorial discussions and study groups;
- Think independently and analytically and direct his or her own learning;
- Manage time effectively in order to be prepared for regular tutorial classes, tests, the examination and to complete assignments.
Last updated: 3 November 2022
Eligibility and requirements
Prerequisites
Undergraduate students:
One of
Code | Name | Teaching period | Credit Points |
---|---|---|---|
PHYC10001 | Physics 1: Advanced | Semester 1 (Dual-Delivery - Parkville) |
12.5 |
PHYC10003 | Physics 1 |
Semester 2 (Dual-Delivery - Parkville)
Semester 1 (Dual-Delivery - Parkville)
|
12.5 |
PHYC10005 Physics 1: Fundamentals
AND
One of
Code | Name | Teaching period | Credit Points |
---|---|---|---|
PHYC10002 | Physics 2: Advanced | Semester 2 (Dual-Delivery - Parkville) |
12.5 |
PHYC10004 | Physics 2: Physical Science & Technology |
Semester 2 (Dual-Delivery - Parkville)
Summer Term (Dual-Delivery - Parkville)
|
12.5 |
PHYC10006 | Physics 2: Life Sciences & Environment | Semester 2 (Dual-Delivery - Parkville) |
12.5 |
AND
VCE Mathematical Methods or equivalent.
Postgraduate students:
Selection of one of the following:
- Mechanical specialisation (formal) in the MC-ENG Master of Engineering
- Mechatronics specialisation (formal) in the MC-ENG Master of Engineering
- Mechanical with Business specialisation (formal) in the MC-ENG Master of Engineering
- Mechanical with Aerospace specialisation (formal) in the MC-ENG Master of Engineering
Corequisites
None
Non-allowed subjects
None
Inherent requirements (core participation requirements)
The University of Melbourne is committed to providing students with reasonable adjustments to assessment and participation under the Disability Standards for Education (2005), and the Assessment and Results Policy (MPF1326). Students are expected to meet the core participation requirements for their course. These can be viewed under Entry and Participation Requirements for the course outlines in the Handbook.
Further details on how to seek academic adjustments can be found on the Student Equity and Disability Support website: http://services.unimelb.edu.au/student-equity/home
Last updated: 3 November 2022
Assessment
Description | Timing | Percentage |
---|---|---|
Written pre-laboratory and pre-computational assignments | Throughout the teaching period | 20% |
Participation in Laboratory and Computational classes | Throughout the teaching period | 20% |
Written and oral laboratory reports and computational assignments
| Throughout the teaching period | 60% |
Last updated: 3 November 2022
Dates & times
- Semester 1
Principal coordinator Harry Quiney Mode of delivery Dual-Delivery (Parkville) Contact hours 72 Hours (six hours of experimental or computational laboratory class per week of the Teaching Period) Total time commitment 170 hours Teaching period 1 March 2021 to 30 May 2021 Last self-enrol date 12 March 2021 Census date 31 March 2021 Last date to withdraw without fail 7 May 2021 Assessment period ends 25 June 2021 Semester 1 contact information
- Semester 2
Principal coordinator Harry Quiney Mode of delivery Dual-Delivery (Parkville) Contact hours 72 Hours (six hours of experimental or computational laboratory class per week of the Teaching Period) Total time commitment 170 hours Teaching period 26 July 2021 to 24 October 2021 Last self-enrol date 6 August 2021 Census date 31 August 2021 Last date to withdraw without fail 24 September 2021 Assessment period ends 19 November 2021 Semester 2 contact information
Time commitment details
170 Hours
Additional delivery details
This subject requires all students to actively and safely participate in laboratory activities.
Last updated: 3 November 2022
Further information
- Texts
Prescribed texts
There are no specifically prescribed or recommended texts for this subject.
- Related Handbook entries
This subject contributes to the following:
Type Name Informal specialisation Physics Informal specialisation Elective subjects for B-BMED Informal specialisation Science Discipline subjects - new generation B-SCI - Available through the Community Access Program
About the Community Access Program (CAP)
This subject is available through the Community Access Program (also called Single Subject Studies) which allows you to enrol in single subjects offered by the University of Melbourne, without the commitment required to complete a whole degree.
Entry requirements including prerequisites may apply. Please refer to the CAP applications page for further information.
- Available to Study Abroad and/or Study Exchange Students
This subject is available to students studying at the University from eligible overseas institutions on exchange and study abroad. Students are required to satisfy any listed requirements, such as pre- and co-requisites, for enrolment in the subject.
Last updated: 3 November 2022