If you want to explore the cutting edge of research in computing and gain skills that will enable you to development software that tackles complex problems then you are looking at the right degree.
This is a unique, interdisciplinary program that will prepare you to be a future leader of the information and communications technology revolution. It also is a great pathway to a PhD.
You’ll work alongside distinguished researchers at ANU and pursue research projects in your own area of interest.
While some of our students are developing code which controls unmanned aerial vehicles, others are busy writing algorithms to mine through Petabytes of data. If mastering challenging projects is your thing, the ANU Bachelor of Advanced Computing (Research and Development) can launch you into a spectacular career
A graduate of the program will have the skills, knowledge and capability to go onto advanced research programs in Computer Science and related areas, and have the potential to become innovators and leaders in the Information Communication Technology (ICT) discipline
Are you a maths whiz who wants stimulating work, limitless potential and an ever growing salary? This is the esteemed degree that will make you a thought leader in a wide variety of areas. With an ANU Bachelor of Actuarial Studies you can excel in your career literally anywhere in the world.
Risk is all around us - in investment markets, on the roads, from our health and the climate. This degree will teach you how to apply your mathematical talent in understanding, measuring and managing these risks.
Graduates will apply mathematical, statistical, financial, economic and other skills to untangle the most complex and difficult problems facing the commercial world.
Career Options
ANU ranks among the world's very finest universities. Our nearly 100,000 alumni include political, business, government, and academic leaders around the world.
We have graduated remarkable people from every part of our continent, our region and all walks of life.
Employment Opportunities
Innovative solutions come to those working in R&D. Graduates can choose to work in ICT R&D in the public or private sector, and in academia.
They can work across a range of industries in a variety of roles. Examples include:
- Data Mining Specialist
- Big Data Analyst
- Human-Computer Interaction Specialist,
- Software Developer
- Embedded systems developer
- Network Architect
- Systems Analyst
- Computer Engineer
- Advanced Software Solutions Engineer
- Software Architect
Our graduates work in many organisations including:
- IBM
- Microsoft
- Yahoo
- Intel
- Price Waterhouse Coopers
- Accenture Australia
- Bloomberg
- National Australia Bank
- Citigroup
- Deloitte
- Unisys
- Australian Government (Australian Taxation Office, Reserve Bank of Australia, Department of Broadband, Communication and the Digital Economy, etc.)
Innovative solutions come to those working in R&D. Graduates can choose to work in ICT R&D in the public or private sector, and in academia.
They can work across a range of industries in a variety of roles. Examples include:
- Data Mining Specialist
- Big Data Analyst
- Human-Computer Interaction Specialist,
- Software Developer
- Embedded systems developer
- Network Architect
- Systems Analyst
- Computer Engineer
- Advanced Software Solutions Engineer
- Software Architect
Our graduates work in many organisations including:
- IBM
- Microsoft
- Yahoo
- Intel
- Price Waterhouse Coopers
- Accenture Australia
- Bloomberg
- National Australia Bank
- Citigroup
- Deloitte
- Unisys
- Australian Government (Australian Taxation Office, Reserve Bank of Australia, Department of Broadband, Communication and the Digital Economy, etc.)
Learning Outcomes
- Define and analyse complex problems, and design, implement and evaluate solutions that demonstrate an understanding of the systems context in which software is developed and operated including economic, social, historical, sustainability and ethical aspects
- Demonstrate an operational and theoretical understanding of the foundations of computer science including programming, algorithms, logic, architectures and data structures
- Recognise connections and recurring themes, including abstraction and complexity, across the discipline
- Adapt to new environments and technologies, and to innovate
- Demonstrate an understanding of deep knowledge in at least one area of computer science
- Communicate complex concepts effectively with diverse audiences using a range of modalities
- Work effectively within teams in order to achieve a common goal
- Demonstrate commitment to professional conduct and development that recognises the social, legal and ethical implications of their work, to work independently, and self- and peer-assess performance
- Demonstrate a deep understanding of the fundamentals of research methodologies, including defining research problems, background reading and literature review, designing experiments, and effectively communicating results
- Proficiently apply research methods to the solution of contemporary research problems in computer science, and
- Demonstrate an understanding of research processes including research proposals, article reviewing and ethics clearance.
- utilise concepts in financial mathematics, including the time value of money, annuities, bond and loan calculations
- interpret the accounts and financial statements of companies and financial institutions.
- describe the fundamental concepts of micro and macroeconomics.
- apply mathematical statistics, regression modeling and other statistical techniques to actuarial problems
- describe and apply stochastic processes, survival models and their application in actuarial contexts
- model and value cashflows dependent on death, survival, illness, retirement, and other contingencies
- apply risk modelling techniques across a variety of financial contexts
Further Information
The Bachelor of Advanced Computing (Research & Development) is a four year program that ias been specifically designed to provide exceptional students with early experience in undertaking research and or development. The program combines a strong foundation in computer science and mathematics, a specialty advanced computing curricula unique to the ANU, and a project based, research intensive course of study, also unique to the ANU. It provides ample scope for the student to pursue research in individual areas of interest, working with researchers of international distinction in the areas of computer science, engineering and mathematics.
A graduate of the program will have a solid grounding in the fundamentals of computing and relevant mathematics, expertise in the software development process, technical knowledge in a selection of contemporary and advanced ICT topics, and a solid experience in research methods in the ICT area.
Students are required to maintain high grades to remain and complete this program. Students who are unable to maintain these grades may transfer into the Bachelor of Advanced Computing (Honours) degree program which also has many research and development opportunities.
Program Transfers
Current students wishing to transfer into the Bachelor of Advanced Computing (Research & Development) are required to achieve at least an 80% average in the university courses they have completed and be deemed suitable by an interview with the program convenor. Generally students would need to transfer into the program before the end of their second year.
Learn more about the degrees offered at the ANU College of Engineering and Computer Science, read current student profiles to see what campus life is really like, and discover what our graduates have achieved since leaving the College. Visit the College of Engineering and Computer Science website.
The Bachelor of Advanced Computing (Research & Development) is a four year program that ias been specifically designed to provide exceptional students with early experience in undertaking research and or development. The program combines a strong foundation in computer science and mathematics, a specialty advanced computing curricula unique to the ANU, and a project based, research intensive course of study, also unique to the ANU. It provides ample scope for the student to pursue research in individual areas of interest, working with researchers of international distinction in the areas of computer science, engineering and mathematics.
A graduate of the program will have a solid grounding in the fundamentals of computing and relevant mathematics, expertise in the software development process, technical knowledge in a selection of contemporary and advanced ICT topics, and a solid experience in research methods in the ICT area.
Students are required to maintain high grades to remain and complete this program. Students who are unable to maintain these grades may transfer into the Bachelor of Advanced Computing (Honours) degree program which also has many research and development opportunities.
Program Transfers
Current students wishing to transfer into the Bachelor of Advanced Computing (Research & Development) are required to achieve at least an 80% average in the university courses they have completed and be deemed suitable by an interview with the program convenor. Generally students would need to transfer into the program before the end of their second year.
Learn more about the degrees offered at the ANU College of Engineering and Computer Science, read current student profiles to see what campus life is really like, and discover what our graduates have achieved since leaving the College. Visit the College of Engineering and Computer Science website.
Admission Requirements
- ATAR:
- 98
- International Baccalaureate:
- 42
Pathways
Bachelor of Advanced Computing (Honours) might be a pathway for students who meet the Maths pre-requisites but do not have the required score for direct entry into this program.
Eligible students should enrol into Bachelor of Advanced Computing (Honours) and if they can maintain a High Distinction average in their first year, they may be approved to transfer into the R&D program in their second year.
Prerequisites
ACT: Mathematical Methods (Major)/Further Mathematics (Major)/Specialist Mathematics/Specialist Methods (Major)
More information about interstate subject equivalencies can be found here .
ACT:
Required:
Mathematical Methods (Major) / Further Mathematics (Major) / Specialist Mathematics (Major) / Specialist Methods (Major)
Recommended:
Specialist Mathematics/Specialist Methods (Major/Minor)
NSW:
Required:
Mathematics Advanced or equivalent
Recommended:
Mathematics Extension 1 or equivalent
More information about interstate subject equivalencies can be found here.
Adjustment Factors
A maximum of 5 equity adjustments apply to programs with a minimum selection rank of 98 or higher. Visit to ANU Adjustment Factors website for further information.
Indicative fees
Bachelor of Advanced Computing (Research and Development) (Honours) - Commonwealth Supported Place (CSP)
Bachelor of Actuarial Studies - Commonwealth Supported Place (CSP)
For more information see: http://www.anu.edu.au/students/program-administration/costs-fees
- Annual indicative fee for international students
- $50,760.00
Scholarships
ANU offers a wide range of scholarships to students to assist with the cost of their studies.
Eligibility to apply for ANU scholarships varies depending on the specifics of the scholarship and can be categorised by the type of student you are. Specific scholarship application process information is included in the relevant scholarship listing.
For further information see the Scholarships website.
Program Requirements
The Bachelor of Advanced Computing (Research and Development) (Honours) flexible double degree component requires completion of 144 units, of which:
A maximum of 60 units may come from completion of 1000-level courses
12 units count towards the requirements of the other double degree component
The 144 units must include:
78 units from completion of compulsory courses from the following list:
COMP1130 Programming as Problem Solving (Advanced)
COMP1140 Structured Programming (Advanced)
COMP1600 Foundations of Computing
COMP2100 Software Construction
COMP2120 Software Engineering
COMP2300 Computer Organisation and Program Execution
COMP2310 Systems, Networks and Concurrency
COMP2420 Introduction to Data Management, Analysis and Security
COMP2550 Computing R&D Methods
COMP2560 Studies in Advanced Computing R&D
COMP3600 Algorithms
COMP3770 Individual Research Project which must be completed twice, in consecutive semesters
6 units from completion of a course from the following list:
MATH1005 Discrete Mathematical Models
MATH2222 Introduction to Mathematical Thinking: Problem-Solving and Proofs
6 units from completion of a course from the following list:
MATH1013 Mathematics and Applications 1
MATH1115 Advanced Mathematics and Applications 1
6 units from completion of a course from the following list:
MATH1014 Mathematics and Applications 2
MATH1116 Advanced Mathematics and Applications 2
STAT1003 Statistical Techniques
STAT1008 Quantitative Research Methods
24 units from completion of one of the following specialisations:
MACL-SPEC - Machine Learning
ARIN-SPEC - Artificial Intelligence
SYAR-SPEC - Systems and Architecture
THCS-SPEC - Theoretical Computer Science
HCCC-SPEC - Human-Centred and Creative Computing
24 units from completion of COMP4550 Computing Research Project which must be completed twice, in consecutive semesters (12+12 units).
The Bachelor of Actuarial Studies flexible double degree component requires completion of 96 units, of which:
A maximum of 48 units may come from completion of 1000-level courses
The 96 units must include:
78 units from completion of the following compulsory courses:
ACST3032 Actuarial Data Analysis
BUSN1001 Business Reporting and Analysis
ECON1101 Microeconomics 1
STAT1008 Quantitative Research Methods
STAT2013 Introductory Mathematical Statistics for Actuarial Studies
STAT2005 Introduction to Stochastic Processes
STAT2014 Regression Modelling for Actuarial Studies
STAT2032 Financial Mathematics
STAT3032 Survival Models
STAT3057 Risk Modelling 1
STAT3058 Risk Modelling 2
STAT3037 Life Contingencies
STAT3038 Actuarial Techniques
6 units from completion of a course from the following list:
ECON1100 Economics 1 (H)
ECON1102 Macroeconomics 1
6 units from completion of a course from the following list:
MATH1013 Mathematics and Application 1
MATH1115 Advanced Mathematics and Application 1
MATH1113 Mathematical Foundations for Actuarial Studies
6 units from the completion of courses on List 1 or List 4 of the ANU College of Business and Economics.
Students may choose to take two MATH courses instead of MATH1113. The options are MATH1013 / MATH1014 or MATH1115 / MATH1116. MATH1013 / MATH1014 is recommended for students with the bare minimum of mathematical background for the Bachelor of Actuarial Studies or for those not confident in their mathematical ability. MATH1115 / MATH1116 is a higher level of MATH1013 / MATH1014 and is recommended for those who are considering further mathematical study. Should two MATH courses be chosen, the elective course position would need to be used for the additional MATH course.
In the requirements of the Bachelor of Actuarial Studies above it is not possible to gain full exemptions from Actuaries Institute Foundation Program requirements as the required FINM courses are not included. However, by including these FINM courses in the other flexible double degree (if the FINM courses meet the requirements of the other degree), or non-award study (i.e., taking more than the standard four courses in some semesters on non-award basis which means you will need to pay full fees for the courses you are overloading) or by using the College of Business and Economics Summer School Program (if available), students may be able to complete their exemptions from the Foundation Program. To facilitate either of these options, it is recommended that students undertake FINM1001 Foundations of Finance as their elective course.
If your flexible double degree is within the College of Business and Economics (for example Commerce and Economics), the suggested study plan may show the same course twice. If this is the case, you must only do the course once and replace the other course with a University Wide Elective, CBE List 1 course or CBE List 4 course. Please note that you cannot exceed 8 out of college electives.
The minor in Business and Economics Essentials will not be listed on transcripts for students completing the Bachelor of Actuarial Studies.
The courses on List 4 are equivalent to the university-offered courses under the Actuaries Institute Actuary Program, noting the following:
- The courses can only be enrolled in by students taking a flexible double degree combining a Bachelor of Actuarial Studies and another degree that contains sufficient overlap in courses to free up sufficient elective space.
- Examples of flexible double degrees where these courses can be fit into the degree are the Bachelor of Commerce, Bachelor of Finance and Bachelor of Statistics (this list is not exhaustive).
- These courses have strict academic entry requirements. Further information on entry requirements into these courses can be found on the links to the course pages linked from the List 4 webpage.
- Students considering including List 4 courses into their degree should contact the program convener for further information on study plans, as it is necessary to move courses in the Bachelor of Actuarial Studies to earlier semesters than that of the study plan below, in order to meet the requisites of the List 4 courses.
Minors
Bachelor of Actuarial Studies Minors
Specialisations
Bachelor of Advanced Computing (Research and Development) (Honours) Specialisations
Study Options
Year 1 | COMP1130 Programming as Problem Solving (Advanced) 6 units | MATH1005 Discrete Mathematical Models 6 units | MATH1115 Advanced Mathematics and Applications 1 6 units OR MATH1013; | |
COMP1140 Structured Programming (Advanced) 6 units | COMP1600 Foundations of Computing 6 units | MATH1116 Advanced Mathematics and Applications 2 6 units OR MATH1014; | ||
Year 2 | COMP2100 Software Construction 6 units | COMP2550 Computing R&D Methods 6 units | COMP2300 Computer Organisation and Program Execution 6 units | |
COMP2120 Software Engineering 6 units | COMP2310 Systems, Networks, and Concurrency 6 units | COMP2560 Studies in Advanced Computing R&D 6 units | ||
Year 3 | COMP2420 Introduction to Data Management, Analysis and Security 6 units | Computing Research Specialisation 6 units | ||
COMP3600 Algorithms 6 units | Computing Research Specialisation 6 units | |||
Year 4 | COMP3770 Computing Research Project (R&D) 6 units | Computing Research Specialisation 6 units | ||
COMP3770 Computing Research Project (R&D) 6 units | Computing Research Specialisation 6 units | |||
Year 5 | COMP4550 Computing Research Project 12 units | COMP4550 | ||
COMP4550 Computing Research Project 12 units | COMP4550 |
Back to the Bachelor of Advanced Computing (Research and Development) (Honours) page
As a high-achieving student in the Bachelor of Advanced Computing (Research & Development) (Honours) (BAC(R&D)) degree you have chosen a unique degree. You will study to become an innovator and a future leader of the ICT revolution by undertaking research with some of the world's leading researchers. You will undertake an accelarated mode of learning, develop a strong foundation in core computer science and be provided with the tools to develop the next generation of computing applications.
The BAC can be taken as a single degree which inlcudes a number of core and compulsory courses. The single degree also offers 48 units (eight courses) of electives that can be taken from additional computing courses (enabling you to complete a Computing major, minor, or specialisation), or from other university courses.
The BAC(R&D) can also be taken as a part of many double degrees. You may not be able to complete a major in a computing discipline but a minor might be possible. You will be able to specialise in other areas as part of the ‘other half’ of your double degree.Single degree
- This degree requires 192 units (each course is typically 6 units)
- Typically you will study four courses per semester (total of 24 units)
Double degree
- This degree requires 144 units (each course is typically 6 units)
- Typically you will study four courses per semester (total of 24 units)
- You will complete a Research and Development major (48 units)
- There are no university electives in the double degree
- You can find your double degree with BAC(R&D) from Program and Courses
About this degree
- Typically you will study 4 courses per semester (total of 24 units) as a
full time student giving you a total of 24 courses across your whole
degree.
- The degree comprises compulsory requirements, additional computing electives, research and development projects, internship and electives in the single degree.
- There are no electives in the double degree but you still may be able to study a computing specialisation (24 units).
Enrolment Status
While it is possible to enrol in fewer courses per semester, which is
called studying part-time, it will take you longer to finish your
program and get your degree. If you are an international study you must
always be full-time.
Important things to keep in mind when choosing your 1000-level courses
- IF YOU ARE COMMENCING IN JULY YOU SHOULD SEND AN EMAIL TO <studentadmin.cecs@anu.edu.au> FOR ADVICE ABOUT YOUR ENROLMENT OR YOU SHOULD ATTEND AN ENROLMENT ADVICE SESSION AT THE UNIVERSITY IN THE WEEK BEFORE SEMESTER COMMENCES.
- As the BAC(R&D) is an advanced degree, you will study both first and second year courses in your first year. First year courses are typically '1000-level' courses ie start with '1' while second year courses typically start with '2'.
- Students doing double degrees with business degrees do STAT1008 in place of STAT1003 and take an additional Computing elective.
- You need to enrol in courses for both First Semester and Second Semester
- You can't study more than four courses (24 units) per semester, eight for the year
- You may take 1000-level courses later in your program. But remember you can’t count more than ten 1000-level courses (60 units) towards your single degree or six 1000-level courses (36 units) towards your BAC(R&D) half of the double degree.
Study Options
Bachelor of Advanced Computing (Research & Development) (Honours)
Study Options
Year 1 48 units | COMP1130 Programming as Problem Solving (Advanced) 6 units | MATH1005 Discrete Mathematical Models 6 units | MATH1115 Advanced Mathematics and Applications 1 6 units OR MATH1013; | University Elective |
COMP1140 Structured Programming (Advanced) 6 units | COMP1600 Foundations of Computing 6 units | MATH1116 Advanced Mathematics and Applications 2 6 units OR MATH1014; | University Elective |
Bachelor of Advanced Computing (Research & Development) (Honours)
Study Options
Year 1 48 units | COMP1130 Programming as Problem Solving (Advanced) 6 units | MATH1005 Discrete Mathematical Models 6 units | MATH1115 Advanced Mathematics and Applications 1 6 units OR MATH1013; | Other Degree course |
COMP1140 Structured Programming (Advanced) 6 units | COMP1600 Foundations of Computing 6 units | MATH1116 Advanced Mathematics and Applications 2 6 units OR MATH1014; | Other Degree course |
Academic Advice
For assistance, please email: studentadmin.cecs@anu.edu.au
Back to the Bachelor of Actuarial Studies page
The Bachelor of Actuarial Studies is offered through the Research School of Finance, Actuarial Studies and Applied Statistics. You will learn how to combine skills from mathematics, statistics, economics, and finance to assess, evaluate and manage future financial risk, thereby addressing a wide range of practical problems in long-term financial planning and management. Actuarial skills are utilised in many areas, including insurance, superannuation, investment, banking, and government.
Single degree
- This degree requires 24 courses (144 units)
- A maximum of 10 courses (60 units) of 1000 level courses
- 14 compulsory courses
- 10 electives (of which 2 must be CBE List 1 elective courses)
- Please note that in the suggested study plan, Finance courses are listed as suggested electives in order to maximise a student's chances at meeting the Actuaries Institute of Australia Foundation Exemptions
Semester 1
- ECON1101 Microeconomics 1 - 6 units
- FINM1001 Fnd of Finance - 6 units
- BUSN1001 Bus Rep & Analysis - 6 units
- STAT1008 Quant Res Methods - 6 units.
Semester 2
- ECON1102 Macroeconomics 1 - 6 units
- FINM2001 Corp Finance - 6 units
- MATH1113 Math Fnd for Act Stud - 6 units
- Elective Course - 6 units
Commencing Semester 2:
Semester 2
- ECON1101 Microeconomics 1 - 6 units
- FINM1001 Fnd of Finance - 6 units
- MATH1113 Math Fnd for Act Stud - 6 units
- STAT1008 Quant Res Methods - 6 units.
Double degree
- This degree requires 16 courses (96 units) of CBE courses
- A maximum of 8 courses (48 units) of 1000 level CBE courses
- 14 compulsory courses.
- 2 CBE List 1 elective courses
Semester 1
Semester 2
Commencing Semester 2:
Please talk with the CBE Student Services Team about a study plan commencing in S2
About this degree
Single degree
In a Bachelor of Actuarial Studies single degree program you will study a total of 24 courses (144 units). Typically you will take 4 courses per semester (total
of 24 units) as a full time student giving you a total of 24 courses across
your whole degree. You will need
to complete a minimum of 16 CBE courses (96 units) but will also get to
choose 8 courses (48 units) from other ANU Colleges. You can try a
range of courses or take a major or minor in a non-CBE subject, the choice is yours. Please note that in the suggested study plan, Finance courses are listed as suggested electives in order to maximise a student's chances at meeting the Actuaries Institute of Australia Foundation Exemptions
Double degree
In a Bachelor of Actuarial Studies double degree
program you will study a total of 96 units. Typically you will take 4
courses per semester (total
of 24 units) as a full time student giving you a total of 16 courses
across
your whole degree. However, for each semester you are likely to take 2
courses from your Actuarial Studies degree and then 2 courses from the other degree - still a total of 4 courses a semester.
Enrolment Status
It is possible to enrol in fewer courses per semester but it will take you longer to finish your program and get your degree. If you are an international student you must always be enrolled full-time in 24 units each semester.
Important things to keep in mind when choosing your 1000-level courses
When you enrol for the first time you will study ‘1000-level’
courses. These courses have ‘1’ as the first number in their course
code, such as ECON1101.
Please also note that:
- You need to enrol in courses for both First Semester and Second Semester.
- In your first year, you cannot study more than four courses (24 units) per semester, eight for the year.
- You may take 1000-level courses later in your program. But remember you can’t count more than ten 1000-level courses (60 units) in total towards your single degree.
- You can change your enrolment via ISIS in courses up until the Monday of Week 2.
Electives
You can use your electives to enrol in any courses that you like, provided you meet prerequisite requirements.
Remember that you can choose up to 8 courses from another ANU College if you are undertaking the single Bachelor of Actuarial Studies degree.
- Please note that in the suggested study plan, Finance courses are listed as suggested electives in order to maximise a student's chances at meeting the Actuaries Institute of Australia Foundation Exemptions
If you are in a double degree, your electives must be CBE courses.
Don't forget the maximum number of 1000 level courses is 10 in single degree.
Study Options
Bachelor of Actuarial Studies
This is a typical study plan for the first year of a student undertaking a Bachelor of Actuarial Studies meeting the Actuaries Institute Part 1 requirementsStudy Options
Year 1 48 units | ECON1101 Microeconomics 1 6 units | FINM1001 Foundations of Finance 6 units | BUSN1001 Business Reporting and Analysis 6 units | STAT1008 Quantitative Research Methods 6 units |
ECON1102 Macroeconomics 1 6 units | FINM2001 Corporate Finance 6 units | MATH1113 Mathematical Foundations for Actuarial Studies 6 units | Elective course 6 units |
Bachelor of Actuarial Studies - Double Degree
This is a typical study plan for the first year of a student undertaking a Bachelor of Actuarial Studies degree with another degree, such as the Bachelor of Arts (degree B)Study Options
Year 1 48 units | ECON1101 Microeconomics 1 6 units | STAT1008 Quantitative Research Methods 6 units | Degree B course 6 units | Degree B course 6 units |
MATH1113 Mathematical Foundations for Actuarial Studies 6 units | ECON1102 Macroeconomics 1 6 units | Degree B course 6 units | Degree B course 6 units |
Disciplines
For further information on specific discipline you can:
- Find information here (http://cbe.anu.edu.au/students/)
Academic Advice
You may choose to take two MATH courses instead of MATH1113. The options are MATH1013/1014 or MATH1115/1116. MATH1013/1014
is recommended for students with the bare minimum of mathematical
background for the Bachelor of Actuarial Studies or for those not
confident in their mathematical ability. MATH1115/1116 is a higher level of MATH1013/1014 and is recommended for those who are considering further mathematical study. Should two MATH courses be chosen, please discuss your amended study plan with the CBE Student Services Team to ensure you are able to progress though the degree.
Please refer to the CBE Fast Track page:
https://www.cbe.anu.edu.au/fasttrack
Please note that in the Flexible double degree (Bachelor of Actuarial program with another ANU College degree) it may not be possible to gain full exemptions from IAAust Part I requirements (as you can only do 16 courses), however you may meet the requirements by taking courses as non-award.
If after reading through these guidelines you are unsure about which courses to enrol in, you can email info.cbe@anu.edu.au
Please refer to the CBE Fast Track page:
https://www.cbe.anu.edu.au/fasttrack