Master's Programme in Sustainable Energy Engineering
Lund University
Lund, Sweden
SEK 370,000.00
SEK 92,500.00
SEK 277,500.00
SEK 900.00
2 Years
Course Overview
The Master’s Programme in Sustainable Energy Engineering at Lund University (LTH) is an advanced postgraduate degree designed to provide students with a deep understanding of energy conversion, distribution, and sustainable energy infrastructure. Taught entirely in English on Campus Lund, this programme awards a Master of Science (120 ECTS) with a major in Energy Engineering. The curriculum combines thermodynamics, fluid dynamics, heat transfer, and electrical engineering with cutting-edge clean-tech solutions. Students explore advanced... Read more
The Master’s Programme in Sustainable Energy Engineering at Lund University (LTH) is an advanced postgraduate degree designed to provide students with a deep understanding of energy conversion, distribution, and sustainable energy infrastructure. Taught entirely in English on Campus Lund, this programme awards a Master of Science (120 ECTS) with a major in Energy Engineering. The curriculum combines thermodynamics, fluid dynamics, heat transfer, and electrical engineering with cutting-edge clean-tech solutions. Students explore advanced technologies including renewable electricity generation, biomass conversion, fuel cells, battery systems, heat pumps, and smart energy networks. The degree culminates in the fourth semester with an independent Master’s Thesis (30 ECTS), conducted within Lund University's world-class engineering research laboratories or in direct collaboration with industrial energy enterprises.
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Career Opportunities
Graduates acquire high-demand engineering and system-optimization capabilities that open diverse international career pathways across power utilities, clean-tech firms, automotive corporations, and environmental consultancies. Key career opportunities include Sustainable Energy Systems Engineer, Thermal Power Specialist, Renewable Energy Project Lead, Smart Grid Analyst, Powertrain Specialist, and Energy Consultant. Alumni optimize energy grids, design low-emission power generation infrastructure, and implement green transition strategies for global engineering consultancies and public energy boards. Furthermore, the strong research rigor built through the thesis provides an ideal academic... Read more
Graduates acquire high-demand engineering and system-optimization capabilities that open diverse international career pathways across power utilities, clean-tech firms, automotive corporations, and environmental consultancies. Key career opportunities include Sustainable Energy Systems Engineer, Thermal Power Specialist, Renewable Energy Project Lead, Smart Grid Analyst, Powertrain Specialist, and Energy Consultant. Alumni optimize energy grids, design low-emission power generation infrastructure, and implement green transition strategies for global engineering consultancies and public energy boards. Furthermore, the strong research rigor built through the thesis provides an ideal academic foundation for pursuing doctoral (PhD) studies in energy engineering, thermal mechanics, or environmental energy systems.
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Course Summary
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-
Lund, Sweden
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2 Year's Post Graduation (PG)
Program Length -
Available Intakes
Aug
-
SEK 370,000.00/Year
Tuition Fees -
Minimum Deposit
SEK 92,500.00 -
Scholarship
SEK 277,500.00 -
SEK 900.00/Year
Application Fees -
SEK 127,872.00/Year
Living Cost
University
Admission Requirements
Academic Requirements
Minimum Level of Education Completed
Bachelor
Minimum Mark (%) OR Minimum CGPA
Mark:60% OR CGPA:2.50
English Proficiency Test Requirements
IELTS
6.5 Overall
Reading
5.5Writing
5.5Listening
5.5Speaking
5.5PTE
62.0 Overall
Reading
59.0Writing
61.0Listening
59.0Speaking
59.0TOEFL
90.0 Overall
Reading
20.0Writing
20.0Listening
20.0Speaking
20.0Additional Requirements
A Bachelor's degree (180 ECTS credits) equivalent to a Swedish Kandidatexamen with a major in Mechanical Engineering, Chemical Engineering, Civil Engineering, Environmental Engineering, or an equivalent discipline. Prerequisites include coursework in Mathematics (including calculus, multivariable analysis, and linear algebra), classical thermodynamics, heat transfer, fluid mechanics, and electrical engineering (circuit theory, three-phase AC, and electrical machines). English language proficiency equivalent to Swedish Upper Secondary School English 6 / English B.