Year 1: Foundations of Chemical Engineering
In the first year, students are introduced to the core concepts of chemical engineering. Modules include:
Engineering Mathematics: Building a strong mathematical foundation essential for engineering problem-solving.
Fluid Mechanics: Understanding the behavior of fluids in various engineering applications.
Thermodynamics: Exploring the principles governing energy and its transformations.
Practical sessions complement theoretical learning, allowing students to apply concepts in laboratory settings.
Year 2: Intermediate Concepts and Applications
The second year delves deeper into chemical engineering topics, with modules such as:
Transport Phenomena: Studying the movement of momentum, heat, and mass in engineering processes.
Chemical Reaction Engineering: Analyzing the rates and mechanisms of chemical reactions.
Process Control: Learning methods to regulate and control industrial processes.
Students continue to engage in laboratory work, enhancing their practical skills and understanding.
Year 3: Advanced Topics and Industry Preparation
In the final year, students tackle advanced subjects and prepare for professional practice. Key modules include:
Process Design: Developing skills to design efficient and sustainable chemical processes.
Safety and Risk Management: Understanding the importance of safety in chemical engineering operations.
Industrial Placement: Gaining real-world experience through a year-long placement in the industry.
This structure ensures that students are well-prepared for the demands of the chemical engineering profession.
Focus Areas
Process Design and Optimization: Emphasizing the creation of efficient and sustainable chemical processes.
Safety and Risk Management: Prioritizing safety in all aspects of chemical engineering practice.
Industrial Experience: Providing hands-on experience through placements and practical sessions.
Learning Outcomes
Graduates of the program will:
Possess a deep understanding of chemical engineering principles.
Be adept at designing and optimizing chemical processes.
Have practical experience through laboratory work and industrial placements.
Be prepared to address safety and risk management challenges in the industry.
Professional Alignment
The BEng (Hons) Chemical Engineering degree at QMUL is accredited by the Institution of Chemical Engineers (IChemE), aligning with the educational requirements for Chartered Engineer status.
Reputation
QMUL is recognized for its strong emphasis on employability, with a high percentage of graduates securing positions in engineering roles shortly after completing their degrees. The university's strong industry connections further enhance career opportunities for students.
At Queen Mary University of London, studying Chemical Engineering isn’t just about lectures and textbooks—you’ll be learning by doing from the very start. The program gives you plenty of chances to get hands-on, whether it’s in labs, design studios, or out in industry, so that by the time you graduate, you’ll feel confident tackling real-world engineering challenges. You’ll also develop teamwork, problem-solving, and technical skills that employers really value.
Here’s what that looks like in practice:
Industrial Placement Year: Spend a full year working in a company, gaining practical experience and building professional connections with employers in sectors like pharmaceuticals, automotive, or energy.
State-of-the-Art Laboratories: Work in modern labs equipped with cutting-edge instrumentation for both experiments and computational research.
Collaborations with Industry Leaders: Opportunities to engage with companies like Jaguar, Pfizer, and Rolls Royce, giving you insights into real engineering projects and potential career pathways.
Design Studio: A dedicated space where you can develop creative solutions to engineering problems through group projects and hands-on design work.
Computational Modelling Facilities: Access high-performance computing resources to simulate and analyse complex chemical processes, preparing you for modern engineering challenges.
These experiences are designed to make sure you’re not just learning theory—you’re applying it, experimenting, and preparing for a career straight out of university.
Graduating with a BEng (Hons) in Chemical Engineering from Queen Mary University of London opens doors to a wide array of career paths in industries such as energy, pharmaceuticals, and manufacturing. The program's emphasis on practical experience, problem-solving, and industry engagement ensures that graduates are well-equipped to tackle real-world challenges.
Upon completion, you could pursue positions such as:
Process Engineer – Designing and optimizing chemical processes in industries like pharmaceuticals, energy, or food production.
Safety Engineer – Ensuring compliance with safety regulations and implementing risk management strategies in industrial settings.
Project Manager – Leading and coordinating engineering projects from conception through to completion.
Sustainability Consultant – Advising companies on sustainable practices and environmental impact reduction.
The program's strong industry connections and comprehensive curriculum provide a solid foundation for these career paths:
Industry Partnerships: Collaborations with leading companies such as Jaguar, Pfizer, and Rolls Royce offer students valuable insights and potential employment opportunities.
Employment Outcomes: 92% of graduates from the School of Engineering and Materials Science are employed or engaged in further study within six months of graduation.
Accreditation: The program is accredited by the Institution of Chemical Engineers (IChemE), ensuring that it meets the high standards set by the UK regulatory body for the engineering profession.
Graduate Salary: The average starting salary for graduates from Queen Mary's engineering programs is £34,500 within six months of graduation.
Further Academic Progression:
After completing the BEng (Hons) Chemical Engineering program, you may choose to further your studies by pursuing a Master of Engineering (MEng) in Chemical Engineering. This advanced program offers deeper specialization in areas such as process design, sustainable energy, and advanced materials. Additionally, Queen Mary University of London offers various postgraduate research opportunities, allowing you to engage in cutting-edge research and development in the field of chemical engineering.



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