Master of Professional Engineering (Chemical and Biomolecular Engineering)

3 Years On Campus Masters Program

University of Sydney

Program Overview

The Master of Professional Engineering (Chemical and Biomolecular Engineering) at the University of Sydney is designed for those who aspire to become leaders in the engineering field, particularly in the dynamic areas of chemical and biomolecular engineering. This program is ideal for students with a background in engineering or science who are eager to deepen their knowledge and skills while making a positive impact on society through innovative engineering solutions.

Curriculum Structure:

Year 1 :

In the first year, students will dive into foundational engineering principles and specialized knowledge through courses such as "Chemical Engineering Principles" and "Biomolecular Engineering." These units provide a solid grounding in the core concepts of chemical processes and the biological aspects of engineering, setting the stage for more advanced studies.

Year 2 : 

The second year builds on this foundation with a focus on practical applications and advanced topics. Students will engage in courses like "Process Design" and "Bioprocess Engineering," where they will learn to design and optimize chemical processes and explore the engineering of biological systems. This year emphasizes hands-on experience and real-world problem-solving, preparing students for the challenges they will face in their careers.

Year 3 :

In the final year, students will undertake a significant project through the "Engineering Project" unit, allowing them to apply their knowledge in a practical setting. Additionally, courses such as "Sustainable Engineering" and "Advanced Chemical Engineering" will enable students to explore cutting-edge technologies and sustainable practices in the field, ensuring they are well-equipped to lead in an ever-evolving industry.

Focus Areas: Chemical engineering, biomolecular engineering, process design, sustainable engineering.

Learning Outcomes: Advanced problem-solving skills, project management, technical expertise in chemical and biomolecular processes, and the ability to work collaboratively in multidisciplinary teams.

Professional Alignment (Accreditation): The program is accredited by Engineers Australia, ensuring that graduates meet the professional standards required for engineering practice.

Reputation (Employability Rankings): The University of Sydney consistently ranks among the top universities globally, with strong employability rankings in engineering disciplines, as recognized by QS World University Rankings and The Guardian.

 

Experiential Learning (Research, Projects, Internships etc.)

At the University of Sydney, the Master of Professional Engineering (Chemical and Biomolecular Engineering) program is designed to provide students with a robust blend of theoretical knowledge and practical skills. This hands-on approach is essential for preparing you for the dynamic challenges in the engineering field. You'll have access to state-of-the-art facilities and tools that enhance your learning experience, allowing you to apply concepts in real-world scenarios.

 

Here are some key aspects of the experiential learning opportunities available in this program:

- Advanced Laboratories: You will work in specialized laboratories equipped with cutting-edge technology for chemical and biomolecular research, including the Chemical Engineering Pilot Plant and the Biomolecular Engineering Lab.

- Industry Projects: Engage in group projects that simulate real-world engineering challenges, allowing you to collaborate with peers and apply your knowledge to practical situations.

- Internship Opportunities: The program encourages internships with leading companies in the engineering sector, providing invaluable industry experience and networking opportunities.

- Software Proficiency: Gain hands-on experience with industry-standard software such as MATLAB, Aspen Plus, and COMSOL Multiphysics, which are essential tools for chemical engineering analysis and design.

- Field Trips: Participate in field trips to local industries and research facilities, giving you insights into the practical applications of your studies and the chance to meet professionals in the field.

- Research Institutes: Access to renowned research institutes affiliated with the university, such as the Sydney Institute of Agriculture and the Sydney Nano Institute, where you can engage in cutting-edge research projects.

- Library Resources: Utilize extensive library resources, including access to engineering databases and journals, to support your research and studies.

 

Progression & Future Opportunities

The Master of Professional Engineering (Chemical and Biomolecular Engineering) at the University of Sydney equips graduates with the skills and knowledge to excel in a variety of high-demand roles. Graduates can pursue careers as Chemical Engineers, Process Engineers, Biochemical Engineers, or Project Managers in engineering projects. With a strong foundation in both theoretical and practical aspects of engineering, you’ll be well-prepared to tackle complex challenges in the industry.

 

Here’s how the University of Sydney supports your journey towards a successful career:

- Career Services: The university offers dedicated career support, including resume workshops, interview preparation, and networking events with industry professionals.
- Employment Statistics: The university boasts an impressive employment rate of over 90% for graduates, with many securing roles within six months of graduation. The average starting salary for engineering graduates is around AUD 80,000, reflecting the high demand for skilled professionals in this field.
- University–Industry Partnerships: The University of Sydney collaborates with leading companies and organizations, such as BHP and CSIRO, providing students with opportunities for internships, projects, and real-world experience that enhance employability.
- Accreditation: The program is accredited by Engineers Australia, ensuring that your qualification meets the highest industry standards and is recognized globally.
- Graduation Outcomes: Graduates of this program are not only well-prepared for immediate employment but also equipped with the skills to advance into leadership roles in their careers.

Further Academic Progression: After completing the Master of Professional Engineering, you may choose to further your studies by pursuing a PhD in Chemical or Biomolecular Engineering. This path allows you to engage in advanced research, contribute to innovative solutions in the field, and potentially teach at the university level. Additionally, you could explore specialized certifications or professional development courses to enhance your expertise and career prospects even further.

 

Program Key Stats

$60,800
$41,300
$150

Febr Intake : 1st NovAug Intake : 30th Apr


No

Eligibility Criteria

2.7 - 4

NA
NA
NA
6.5
85
2:1
NA

Additional Information & Requirements

Country Requirements

Career Options

  • Chemical Engineer
  • Biomolecular Engineer
  • Process Engineer
  • Bioprocess Engineer
  • Pharmaceutical Process Engineer
  • Energy Engineer
  • Environmental Engineer
  • Process Design Engineer
  • Research and Development Engineer
  • Manufacturing Engineer

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