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Lund University
Master's Programme in Sustainable Energy Engineering
<p>The global energy sector is transforming due to climate change, renewable energy, and increased electrification. This programme equips you to lead in this evolving sector, combining technical expertise with real-world applications and cutting-edge research.</p><p>This master’s programme offers a broad understandi…
- Higher education
- Information unavailable
- 31 August 2026
- Information unavailable
- Information unavailable
- 100 %
Overview
<p>The global energy sector is transforming due to climate change, renewable energy, and increased electrification. This programme equips you to lead in this evolving sector, combining technical expertise with real-world applications and cutting-edge research.</p><p>This master’s programme offers a broad understanding of energy conversion and distribution, focusing on sustainable solutions. It combines technical knowledge with research insights, preparing you to tackle the challenges of a fast-changing energy sector. </p><p>The programme addresses the urgent need for clean energy solutions and the transition to a fossil-free future, driven by global regulations and technological advancements. You will engage with advanced technologies such as power plants, fuel cells, engines, batteries, and heat pumps, grounded in thermodynamics, fluid dynamics, physics, and chemistry. </p><p>A key focus is understanding the complexities of integrating renewable energy sources into existing energy infrastructure and developing solutions for efficient energy storage and distribution. The programme explores how energy production and consumption impact the environment and how emerging technologies can reduce emissions and increase efficiency. </p><p>The field of sustainable energy engineering is highly interdisciplinary, combining mechanical and electrical engineering with environmental science and economics. This integrated approach allows you to understand the broader implications of energy solutions and design systems that are both technically and economically viable.</p><p> </p><p> </p><p> </p>
Admission scores
Entry requirements
A Bachelor’s degree in mechanical engineering, chemical engineering, civil engineering, environmental engineering or equivalent. Completed courses in mathematics including calculus, multivariable analysis and linear algebra, as well as completed courses in classical thermodynamics, heat transfer (may be included in a comprehensive course in thermodynamics) and fluid mechanics. A course in electrical engineering, including circuit theory, three-phase AC and electrical machines. English 6.
The text is reproduced from the Susa source. Antagningsdata does not map GY11 and GY25 or assess personal eligibility.
Source, measure and data quality
- Source
- Skolverket Susa-navet
- Period
- 2026-08-31
- Measure
- Entry-requirement text reproduced from the published Susa data; no personal eligibility assessment is made.
- Population
- Education offering e.uoh.lu.tahet.18955.20262
- Last checked
- 2026-09-23T10:38:33.477975+00:00
- Limitation
- Antagningsdata does not map GY11 and GY25. General and specific conditions are not separated without structured source data.
Programme content
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- Programme or course starts
- Programme or course ends
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About the provider
Sources and data quality
Education facts for the selected offering come from Skolverket Susa-navet.
Retrieved . Published . Times are shown in Swedish local time.
Source identity and publication version
- Publication version
- 8e217193-f5fa-4778-b085-a4521fd03e8d
- Education identity in the source
- i.uoh.lu.tahet.18955.20262
- Offering identity in the source
- e.uoh.lu.tahet.18955.20262
- Education-form source code
- HS
- Education code in the source
- TAHET
- Change time according to the source
- 2026-02-10T09:12:42
The provider, education and education offering are separate identities. Application information should be checked on the official website. Supplementary statistics have not been obtained from this source.