Master of Engineering (Chemical Engineering)

2 Years On Campus Masters Program

RMIT University

Program Overview

The Master of Engineering (Chemical Engineering) at RMIT University is designed for those looking to deepen their expertise in chemical engineering and tackle real-world challenges in the industry. This program is ideal for engineering graduates and professionals seeking to enhance their skills in areas such as process design, sustainability, and innovation.

Curriculum Structure:

First Year:
The first year develops advanced knowledge of core chemical engineering principles alongside professional engineering practice. You will study units such as CHPR4404 Advanced Thermodynamics and Mass Transfer Processes, CHPR4406 Reaction Engineering, and CHPR4407 Transport Phenomena, while also completing professional subjects including GENG5505 Project Management and Engineering Practice and GENG5507 Risk, Reliability and Safety. These units strengthen your expertise in process design, engineering analysis, safety, and project management for industrial applications.

Second Year:
The final year focuses on advanced design, research, and industry specialisation, allowing you to apply engineering knowledge to complex real-world challenges. You will complete CHPR4420 Process Dynamics and Control, CHPR5501 Advanced Reaction Engineering and Catalysts, and the CHPR5550 Chemical Engineering Design Project, while selecting advanced electives such as Chemical and Thermal Renewable Energies, Gas Processing Technologies, or Energy Storage Systems. A research project and professional practicum further prepare you for leadership roles in the chemical, energy, and process engineering industries. 

Focus Areas: Process design, sustainability, innovation, and advanced chemical engineering principles.

Learning Outcomes: Graduates will be equipped with advanced technical skills, critical thinking abilities, and the capacity to solve complex engineering problems in the chemical industry.

Professional Alignment (Accreditation): The program is accredited by Engineers Australia, ensuring that it meets the highest standards of engineering education.

Reputation (Employability Rankings): RMIT University consistently ranks highly for employability, with QS World University Rankings placing it among the top universities globally for graduate employment.

 

Experiential Learning (Research, Projects, Internships etc.)

At RMIT University, the Master of Engineering (Chemical Engineering) program is designed to provide students with a robust blend of theoretical knowledge and practical skills. This hands-on approach ensures that you not only learn the principles of chemical engineering but also apply them in real-world scenarios. The university boasts state-of-the-art facilities and tools that enhance your learning experience, preparing you for a successful career in the industry.

 

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

- Advanced Laboratories: Access to specialized laboratories equipped with the latest technology for chemical analysis, process engineering, and materials testing.
- Industry-Standard Software: Use of industry-relevant software such as Aspen Plus for process simulation, MATLAB for numerical analysis, and AutoCAD for design projects.
- Group Projects: Collaborate with peers on team-based projects that mimic real-world engineering challenges, fostering teamwork and problem-solving skills.
- Internship Opportunities: Gain valuable industry experience through internships with leading companies, allowing you to apply your knowledge in a professional setting.
- Field Trips: Participate in excursions to local industries and research facilities, providing insights into the practical applications of chemical engineering.
- Research Institutes: Engage with RMIT’s research institutes, such as the Centre for Advanced Materials and Performance, where you can contribute to cutting-edge research projects.
- Access to Libraries: Utilize RMIT’s extensive library resources, including access to engineering journals, databases, and study spaces tailored for engineering students.

 

Progression & Future Opportunities

Graduating with a Master of Engineering (Chemical Engineering) from RMIT University opens up a world of opportunities in a dynamic and growing field. Graduates are well-prepared for roles such as Chemical Engineer, Process Engineer, and Environmental Consultant, among others. The skills and knowledge gained during this program position you for a successful career in various industries, including pharmaceuticals, energy, and manufacturing.

 

Here’s what you can expect in terms of progression and future opportunities:

- University Services: RMIT offers dedicated career services, including resume workshops, interview preparation, and networking events with industry professionals, ensuring you are well-equipped for the job market.
- Employment Stats and Salary Figures: RMIT boasts a high employment rate for graduates, with many securing roles shortly after graduation. The average salary for chemical engineers in Australia is around AUD 80,000 to AUD 100,000, depending on experience and location.
- University–Industry Partnerships: RMIT has strong connections with leading companies such as Shell, BHP, and CSIRO, providing students with valuable internship opportunities and real-world project experience.
- Long-term Accreditation Value: The Master of Engineering (Chemical Engineering) is accredited by Engineers Australia, ensuring that your qualification is recognized both nationally and internationally, enhancing your employability.
- Graduation Outcomes: Graduates from this program are known for their strong problem-solving skills and innovative thinking, making them highly sought after by employers in various sectors.

Further Academic Progression: After completing your Master’s degree, you may choose to pursue a PhD in Chemical Engineering or a related field. This path allows you to engage in advanced research, contribute to innovative solutions in the industry, and further enhance your career prospects in academia or specialized industry roles.

 

Program Key Stats

$44,160
$-
$0
Rolling


No
No

Eligibility Criteria

2.5 - 4
4 Years

NA
NA
NA
6.5
79
2:1
NA

Additional Information & Requirements

Country Requirements

Career Options

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

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