Master of Science in Chemical Process Engineering

University of Leeds

UK,England

 0 Shortlist

12 Months

Duration

CAD 25,750/year

Tuition Fee

CAD 0 FREE

Application Fee

Apply Date

UK, England

Type: University

Location Type: Urban

Founded: 1904

Total Students: 39,000 +

Int. Students: 13,400 +

Campus Detail

Main Campus Address

Woodhouse, Leeds LS2 9JT, United Kingdom

Master of Science in Chemical Process Engineering

Program Overview

This Masters degree will build upon your existing scientific and engineering knowledge and skills to convert them into a specialisation in chemical engineering. It will provide you with up-to-date competencies in chemical engineering and process technology, paving the way for an exciting and challenging career in the industry.

Upon graduating from this course, you will be able to design, operate and manage processes and associated manufacturing plants. You will also gain key skills in innovation leadership, technology transfer and research and development that you will draw on in your future career.

You’ll undertake a large research project and study a series of compulsory taught modules covering chemical engineering principles; chemical process technology; chemical reaction processes; separation processes; plant design; batch process engineering and chemical products design and development.

This course is suitable for graduates of a related engineering or science undergraduate degree, for example in chemistry. If you are a chemical engineering graduate, you might be interested in our Advanced Chemical Engineering MSc.

Course highlights

  • Advanced your knowledge and skills in chemical engineering principles, chemical process technology, separation processes, plant design, batch process engineering and more.
  • Conduct an extensive, independent research project using some of our cutting-edge facilities.
  • Our courses are shaped by our world-leading research in areas such as sustainable systems and processes.

Specialist facilities

  • We have world-class facilities for carrying out research in manufacturing (including crystallisation), processing and characterising particulate systems for a wide range of technological materials, as well as facilities for nanotechnology and colloid science and technology.
  • We also have high-performance computing facilities and state-of-the-art computer software, including computational fluid dynamics (CFD), for modelling and simulation of a wide range of processes. This will provide a strong background knowledge in industrial process and equipment design and optimisation.

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