Faculty of Engineering

Table of Contents

1. Department of Chemical and Biomolecular Engineering
2. Department of Chemical and Biomolecular Engineering: Undergraduate degree structures
    2.1. Bachelor of Engineering (Chemical) (BE)
    2.2. Bachelor of Engineering (Chemical and Biomolecular) (BE)
    2.3. Bachelor of Engineering (Engineering Management) (Chemical)
    2.4. Bachelor of Arts/Bachelor of Engineering (BA/BE)
    2.5. Bachelor of Engineering/Bachelor of Commerce (BE/BCom)
    2.6. Bachelor of Laws/Bachelor of Engineering (Chemical) (LLB/BE)
    2.7. Bachelor of Engineering/Bachelor of Science (BE/BSc)
        2.7.1. Biochemical Engineering stream
Subject Lists
    Subject descriptions


1. Department of Chemical and Biomolecular Engineering

Following the introduction of the chemical engineering degree in 1952, graduates from the Department of Chemical and Biomolecular Engineering have been readily accepted into industry, both in Australia and world wide. Graduate chemical and biomolecular engineering starting salaries are higher than for any other engineering discipline.

Chemical and Biomolecular engineering is concerned with developing and analysing process systems, which are strongly dependent upon chemistry and involve physical changes. Our graduates find employment in the biochemical industry, the food industry, the minerals industry, the metallurgical industry and the pharmaceutical industry, as well as in the traditional chemical industry. Chemical and Biomolecular engineers are well suited for environment-related engineering positions given their strong background in process systems and in chemical and biological processes in particular.

Chemistry and mathematics are taken through the first two years of the course. In Semester 2 of first year, a major chemical and biomolecular engineering subject is taken. Students may also take a Semester 1 unit, Introduction to Chemical Engineering, which provides a comprehensive introduction to the discipline, its role in the modern world and the challenges that lie ahead.

In second year, students are introduced to further specific chemical engineering subjects that build on the first-year core subject. These in turn are built on in subsequent years and culminate in final year design and research projects, which bring together all that the student has learnt in the preceding years. Provision is also made for students to broaden their education by taking a number of elective subjects during their course.

2. Department of Chemical and Biomolecular Engineering: Undergraduate degree structures

2.1. Bachelor of Engineering (Chemical) (BE)

The recommended or standard course structures are listed below. When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied. Where the courses include elective subjects these should be chosen so that timetable clashes are avoided. In particular, students in combined degrees should plan their courses so that the subjects chosen in the other faculty do not clash with those recommended for the engineering component.

First year
Semester 1Points
 411-101 Introduction to Chemical Engineering12.5
 610-141 Chemistry A12.5
 or 
 610-121 Chemistry A (Advanced Studies Program)12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 Elective12.5
Semester 2
 411-102 Chemical Process Analysis12.5
 610-142 Chemistry B12.5
 or 
 610-122 Chemistry B (Advanced Studies Program)12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 Elective12.5
Second year
Semester 1Points
 411-201 Introduction to Transport Processes12.5
 411-202 Process Engineering 112.5
 431-201 Engineering Analysis A12.5
 610-221 Organic & Bio-organic Chemistry12.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 431-202 Engineering Analysis B12.5
 610-211 Light, Matter & Chemical Change B12.5
Third year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-331 Heat and Mass Transport Processes 112.5
 411-334 Biochemical/Environmental Engineering 1A6.25
 411-335 Biochemical/Environmental Engineering 1B6.25
 411-343 Chemical Engineering Management12.5
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 411-338 Product Engineering12.5
 411-339 Process Engineering 212.5
Fourth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 411-445 Process Engineering 312.5
Semester 2
 411-446 Research Project18.75
 411-447 Design Project18.75
 411-448 Biochemical/Environmental Engineering 212.5
 or 
 411-449 Minerals Engineering12.5

2.2. Bachelor of Engineering (Chemical and Biomolecular) (BE)

The recommended or standard course structure for the first year only of the Bachelor of Engineering (Chemical and Biomolecular) is listed below. Later year structures will be published as they become available (e.g the structure for second year will be in the 2006 handbook). When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware, however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied.

First year
Semester 1Points
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 650-141 Biology of Cells and Organisms12.5
 411-101 Introduction to Chemical Engineering12.5
Semester 2
 610-142 Chemistry B12.5
 or 
 610-122 Chemistry B (Advanced Studies Program)12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 650-142 Genetics & The Evolution of Life12.5
 411-102 Chemical Process Analysis12.5

2.3. Bachelor of Engineering (Engineering Management) (Chemical)

The recommended or standard course structure for the first year only of the Bachelor of Engineering (Engineering Management) (Chemical) is listed below. Later years will be published as they become available (e.g. the second year structure will be in the 2006 handbook). When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware, however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied.

First year
Semester 1Points
 411-101 Introduction to Chemical Engineering12.5
 610-141 Chemistry A12.5
 or 
 610-121 Chemistry A (Advanced Studies Program)12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 325-101 Managing People and Organisations12.5
Semester 2
 411-102 Chemical Process Analysis12.5
 610-142 Chemistry B12.5
 or 
 610-122 Chemistry B (Advanced Studies Program)12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 Commerce subject12.5

2.4. Bachelor of Arts/Bachelor of Engineering (BA/BE)

The recommended or standard course structures are listed below. When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied. Where the courses include elective subjects these should be chosen so that timetable clashes are avoided. In particular, students in combined degrees should plan their courses so that the subjects chosen in the other faculty do not clash with those recommended for the engineering component.

Students who intend to overlap second and later year subjects should consult with a course adviser to ensure all core engineering requirements are met.

First year
Semester 1Points
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 Arts subjects as required25
Semester 2
 610-142 Chemistry B12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 Arts subjects as required25
Second year
Semester 1Points
 431-201 Engineering Analysis A12.5
 610-221 Organic & Bio-organic Chemistry12.5
 Arts subjects as required25
Semester 2
 411-102 Chemical Process Analysis12.5
 431-202 Engineering Analysis B12.5
 Arts subjects as required25
Third year
Semester 1Points
 411-201 Introduction to Transport Processes12.5
 Arts subjects as required37.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 610-211 Light, Matter & Chemical Change B12.5
 Arts subject as required12.5
Fourth year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-331 Heat and Mass Transport Processes 112.5
 411-334 Biochemical/Environmental Engineering 1A6.25
 411-335 Biochemical/Environmental Engineering 1B6.25
 411-343 Chemical Engineering Management12.5
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 Arts subjects as required25
Fifth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 Arts subject as required12.5
Semester 2
 411-446 Research Project18.75
 411-447 Design Project18.75
 Arts subject as required12.5

2.5. Bachelor of Engineering/Bachelor of Commerce (BE/BCom)

The recommended or standard course structures are listed below. When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied. Where the courses include elective subjects these should be chosen so that timetable clashes are avoided. In particular, students in combined degrees should plan their courses so that the subjects chosen in the other faculty do not clash with those recommended for the engineering component.

Students who intend to overlap second- and later-year subjects should consult with a course adviser to ensure all core engineering requirements are met.

First year
Semester 1Points
 316-102 Introductory Microeconomics12.5
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 Commerce subject as required12.5
Semester 2
 316-101 Introductory Macroeconomics12.5
 316-130 Quantitative Methods 112.5
 610-142 Chemistry B12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
Second year
Semester 1Points
 316-205 Introductory Econometrics12.5
 431-201 Engineering Analysis A12.5
 610-221 Organic & Bio-organic Chemistry12.5
 Commerce subject as required12.5
Semester 2
 411-102 Chemical Process Analysis12.5
 431-202 Engineering Analysis B12.5
 610-211 Light, Matter & Chemical Change B12.5
 Commerce subject as required12.5
Third year
Semester 1Points
 411-201 Introduction to Transport Processes12.5
 Commerce subjects as required37.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 Commerce subjects as required25
Fourth year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-331 Heat and Mass Transport Processes 112.5
 411-334 Biochemical/Environmental Engineering 1A6.25
 411-335 Biochemical/Environmental Engineering 1B6.25
 411-343 Chemical Engineering Management12.5
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 Commerce subjects as required25
Fifth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 Commerce subject as required12.5
Semester 2
 411-446 Research Project18.75
 411-447 Design Project18.75
 Commerce subject as required12.5

2.6. Bachelor of Laws/Bachelor of Engineering (Chemical) (LLB/BE)

The recommended or standard course structures are listed below. When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied. Where the courses include elective subjects these should be chosen so that timetable clashes are avoided. In particular, students in combined degrees should plan their courses so that the subjects chosen in the other faculty do not clash with those recommended for the engineering component.

Students taking combined degree courses and who intend to overlap second- and later-year subjects, should consult with a course adviser to ensure all core engineering requirements are met. Students must ensure they complete 300 points of law subjects overall, including the core subjects listed below and at least 12.5 points of legal theory.

First year
Semester 1Points
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 730-105 History and Philosophy of Law I12.5
 730-101 Torts and the Process of Law I12.5
Semester 2
 610-142 Chemistry B12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 730-115 History and Philosophy of Law II12.5
 730-102 Torts and the Process of Law II12.5
Second year
Semester 1Points
 431-201 Engineering Analysis A12.5
 610-221 Organic & Bio-organic Chemistry12.5
 730-221 Contracts I12.5
 730-231 Criminal Law and Procedure I12.5
Semester 2
 431-202 Engineering Analysis B12.5
 411-102 Chemical Process Analysis12.5
 730-222 Contracts II12.5
 730-232 Criminal Law and Procedure II12.5
Third year
Year longPoints
 730-301 Constitutional and Administrative Law25
Semester 1
 411-201 Introduction to Transport Processes12.5
 730-341 Property I: Concepts and Principles12.5
 Law subject as required12.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 730-342 Property II: Acquisition and Dealings12.5
Fourth year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-331 Heat and Mass Transport Processes 112.5
 411-334 Biochemical/Environmental Engineering 1A6.25
 411-335 Biochemical/Environmental Engineering 1B6.25
 411-343 Chemical Engineering Management12.5
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 730-462 Equity and Trusts12.5
 610-211 Light, Matter & Chemical Change B12.5
Fifth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 Law subject as required12.5
Semester 2
 411-446 Research Project18.75
 411-447 Design Project18.75
 Law subject as required12.5
Sixth year
 Law subjects as required to ensure 300 points of law subjects completed100

2.7. Bachelor of Engineering/Bachelor of Science (BE/BSc)

The following programs are samples only. The first-year program should fulfil the prerequisites for both BE and BSc studies. For example, those students intending to pursue a major in life sciences should complete the 100-level subjects specified in the life sciences package First-year packages.

Usually the 200-level BE requirements are taken over two years, in the second and third year of the combined program. The order in which the units are taken may be altered to accommodate timetable arrangements.

The recommended or standard course structures are listed below. When setting the timetable every effort will be made to avoid clashes between the times of classes associated with these sets of subjects. Students should be aware however, that if it proves to be impossible to achieve a timetable without clashes in these sets of subjects, the Faculty reserves the right to modify course structures in order to eliminate the conflicts. Students will be advised during the enrolment period of the semester if the recommended courses need to be varied. Where the courses include elective subjects these should be chosen so that timetable clashes are avoided. In particular, students in combined degrees should plan their courses so that the subjects chosen in the other faculty do not clash with those recommended for the engineering component.

Students taking combined degree courses and who intend to overlap second- and later-year subjects, should consult with a course adviser to ensure all core engineering requirements are met.

First year
Semester 1Points
 411-101 Introduction to Chemical Engineering112.5
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
 Science subject as required12.5
Semester 2
 411-102 Chemical Process Analysis12.5
 610-142 Chemistry B12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
 Science subject as required12.5
Second year
Semester 1Points
 411-201 Introduction to Transport Processes12.5
 610-221 Organic & Bio-organic Chemistry12.5
 620-192 Mathematics B12.5
 or 
 620-194 Mathematics B (Advanced)12.5
 Science subject as required12.5
Semester 2
 620-232 Mathematical Methods12.5
 610-211 Light, Matter & Chemical Change B12.5
 Science subjects as required25

Note: Students intending to take Faculty of Engineering mathematics subjects at the 200-level instead of Faculty of Science mathematics subjects must seek course advice from the Department of Chemical and Biomolecular Engineering.

Third year
Semester 1Points
 620-231 Vector Analysis12.5
 Science subjects as required37.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 Science subjects as required25
Fourth year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-331 Heat and Mass Transport Processes 112.5
 411-334 Biochemical/Environmental Engineering 1A6.25
 411-335 Biochemical/Environmental Engineering 1B6.25
 411-343 Chemical Engineering Management12.5
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 411-338 Product Engineering12.5
 411-339 Process Engineering 212.5
Fifth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 411-445 Process Engineering 312.5
Semester 2
 411-446 Research Project18.75
 411-447 Design Project18.75
 411-448 Biochemical/Environmental Engineering 212.5
 or 
 411-449 Minerals Engineering12.5

2.7.1. Biochemical Engineering stream

First year
Semester 1Points
 411-101 Introduction to Chemical Engineering12.5
 650-141 Biology of Cells and Organisms12.5
 610-141 Chemistry A12.5
 620-121 Mathematics A (Advanced)12.5
 or 
 620-141 Mathematics A12.5
Semester 2
 411-102 Chemical Process Analysis12.5
 650-142 Genetics & The Evolution of Life12.5
 610-142 Chemistry B12.5
 620-123 Applied Mathematics (Advanced)12.5
 or 
 620-143 Applied Mathematics12.5
Second year
Semester 1Points
 411-201 Introduction to Transport Processes12.5
 620-192 Mathematics B12.5
 or 
 620-194 Mathematics B (Advanced)12.5
 521-211 Biochemistry & Molecular Biology Part A12.5
 526-201 Principles of Microbiology & Immunology12.5
Semester 2
 610-211 Light, Matter & Chemical Change B12.5
 620-232 Mathematical Methods12.5
 521-212 Biochemistry & Molecular Biology Part B12.5
 526-221 Practical Microbiology12.5
Third year
Semester 1Points
 610-221 Organic & Bio-organic Chemistry12.5
 620-231 Vector Analysis12.5
 526-301 Microbial Cells and Genomes12.5
 526-321 Molecular Microbiology Techniques12.5
Semester 2
 411-203 Fluid Mechanics12.5
 411-204 Chemical Engineering Thermodynamics12.5
 526-302 Microbial Biotechnology12.5
 526-327 Projects: Microbiology12.5
Fourth year
Semester 1Points
 411-303 Reactor Engineering12.5
 411-330 Biochemical Engineering Mini-project6.25
 411-331 Heat and Mass Transport Processes 112.5
 411-343 Chemical Engineering Management12.5
 411-335 Biochemical/Environmental Engineering 1B6.25
Semester 2
 411-336 Process Dynamics and Control12.5
 411-337 Practical and Computer Laboratory12.5
 411-338 Product Engineering12.5
 411-339 Process Engineering 212.5
Fifth year
Semester 1Points
 411-432 Particle Mechanics and Processing12.5
 411-441 Heat and Mass Transport Processes 212.5
 411-442 Process Equipment Design12.5
 411-445 Process Engineering 312.5
Semester 2
 411-447 Design Project18.75
 411-448 Biochemical/Environmental Engineering 212.5
 411-450 Biochemical Engineering Research Project18.75

Subject descriptions

316-101 Introductory Macroeconomics
316-102 Introductory Microeconomics
316-130 Quantitative Methods 1
316-205 Introductory Econometrics
325-101 Managing People and Organisations
411-101 Introduction to Chemical Engineering
411-102 Chemical Process Analysis
411-201 Introduction to Transport Processes
411-202 Process Engineering 1
411-203 Fluid Mechanics
411-204 Chemical Engineering Thermodynamics
411-217 Chemical Engineering Research Elective 2
411-303 Reactor Engineering
411-317 Chemical Engineering Research Elective 3
411-330 Biochemical Engineering Mini-project
411-331 Heat and Mass Transport Processes 1
411-334 Biochemical/Environmental Engineering 1A
411-335 Biochemical/Environmental Engineering 1B
411-336 Process Dynamics and Control
411-337 Practical and Computer Laboratory
411-338 Product Engineering
411-339 Process Engineering 2
411-343 Chemical Engineering Management
411-417 Chemical Engineering Research Elective 4
411-432 Particle Mechanics and Processing
411-441 Heat and Mass Transport Processes 2
411-442 Process Equipment Design
411-445 Process Engineering 3
411-446 Research Project
411-447 Design Project
411-448 Biochemical/Environmental Engineering 2
411-449 Minerals Engineering
411-450 Biochemical Engineering Research Project
431-201 Engineering Analysis A
431-202 Engineering Analysis B
610-141 Chemistry A
610-142 Chemistry B
610-211 Light, Matter & Chemical Change B
610-221 Organic & Bio-organic Chemistry
620-121 Mathematics A (Advanced)
620-122 Mathematics B (Advanced)
620-123 Applied Mathematics (Advanced)
620-141 Mathematics A
620-142 Mathematics B
620-143 Applied Mathematics
620-231 Vector Analysis
620-232 Mathematical Methods
640-121 Physics A (Adv)
640-122 Physics B (Adv)
640-141 Physics A
640-142 Physics B
650-141 Biology of Cells and Organisms
650-142 Genetics & The Evolution of Life
730-105 History and Philosophy of Law I
730-115 History and Philosophy of Law II


1. Elective or science subject.

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