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University of Gothenburg
Physics, Master's Programme
Short Summary<br> The master’s programme in Physics offers a forward-thinking curriculum in theoretical, computational and experimental physics. Particular emphasis is placed on astronomy, biological physics, high-energy physics, and material science. As a student of the programme, you will develop your critical eva…
- Higher education
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- 31 August 2026
- GÖTEBORG
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- 100 %
Overview
Short Summary<br> The master’s programme in Physics offers a forward-thinking curriculum in theoretical, computational and experimental physics. Particular emphasis is placed on astronomy, biological physics, high-energy physics, and material science. As a student of the programme, you will develop your critical evaluation and problem-solving abilities, advanced experimental techniques, collaboration and presentation skills, and engineering skills grounded in the fundamental principles of physics. About the Programme<br> Physics is the science of matter and the forces that hold it together. Probing the smallest structures of matter and the largest structures of the Universe, the developments within physics have influenced philosophical thought and our entire world view. Understanding the basic laws of physics has been a fascinating problem since the birth of modern science, and physics forms the basis for technological and engineering sciences. New discoveries within physics often have direct applications and lead to the development of new products and technologies. While these forces present both exciting opportunities and unparalleled challenges, the demand for future scientific solutions and rapid technological innovation remains unchanged. If you choose to study physics you will find many new exciting things to investigate. History has shown that each new generation of physicists makes its own great discoveries. Balancing experimentation and theory in diverse subjects The master’s programme in Physics emphasizes the interaction between experiment and theory, which characterizes the development of modern physics. In short, theory provides models and concepts that can explain and predict experimental observations. Computers allow for numerical computation of the fundamental laws of physics and advanced techniques, such as machine learning. Using advanced instrumentation, both in-house and at large facilities like Onsala Space Observatory, will provide you with in-depth knowledge of material and biological systems, and of distant stars and galaxies. Our programme will develop your understanding of the fundamental laws of nature and how they are related to the smallest and most fundamental building blocks. Much of the physics and technology that we meet in everyday life falls into the category of condensed matter physics, and there are many exciting areas within physics where you can study the interaction between atoms or molecules and the consequences. There is also strong development in the areas bordering on chemistry and biology. Tailor your education to your interests and goals The core courses of the programme provide a solid understanding of the fundamental principles of physics, preparing you for a future driven by knowledge and technology. We offer five specializations to build upon this foundation, see below Research connections Together with Chalmers University of Technology, we offer a strong research environment with several active researchers as course-responsible teachers in the programme. Research activities include: the study of string theory;<br> computational methods to understand the atomic and sub-atomic scale;<br> energy-related materials, such as lithium batteries;<br> materials for specific applications, such as nanoplasmonics;<br> interfaces between biological systems and inorganic structures;<br> advanced experiments, in which state-of-the-art instruments contribute to an understanding of both the microscopic world and astrophysical phenomena.<br> Who Should Apply?<br> Are you interested in the theoretical, computational, and experimental aspects of physics? Do you want to learn the theories, models, and concepts that help explain and predict experimental observations? Do you want the skills to use computers and advanced techniques like machine learning for numerical computation of the fundamental laws of physics? If you have a keen interest in either the theoretical or experimental aspects of frontline physics and astronomy, then apply to the master’s programme in Physics. Programme Structure and Content<br> The programme begins with three core courses: \- Learning from Data<br> \- Quantum Mechanics<br> \- Experimental Methods in Modern Physics These are followed by preparation courses, which provide the necessary foundational knowledge for you to take specialized courses. We recommend you focus on two of the following five tracks: \- astronomy<br> \- biological physics<br> \- computational physics<br> \- high-energy physics<br> \- materials science The last semester is dedicated to your master’s thesis.
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Entry requirements
A Bachelor's degree or the equivalence to 180 Swedish credit points (p) or 180 ECTS credits at an accredited university. At least 90 credits physics (including quantum mechanics), 30 credits maths (including linear algebra and analysis), and programming. Applicants must prove their knowledge of English: English 6/English B from Swedish Upper Secondary School or the equivalent level of an internationally recognized test, for example TOEFL, IELTS.
The text is reproduced from the Susa source. Antagningsdata does not map GY11 and GY25 or assess personal eligibility.
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- Skolverket Susa-navet
- Period
- 2026-08-31
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- Entry-requirement text reproduced from the published Susa data; no personal eligibility assessment is made.
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- Education offering e.uoh.gu.n2phy.11049.20262
- Last checked
- 2026-09-23T10:36:59.285029+00:00
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- Antagningsdata does not map GY11 and GY25. General and specific conditions are not separated without structured source data.
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Education facts for the selected offering come from Skolverket Susa-navet.
Retrieved . Published . Times are shown in Swedish local time.
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- Publication version
- 8e217193-f5fa-4778-b085-a4521fd03e8d
- Education identity in the source
- i.uoh.gu.n2phy.11049.20262
- Offering identity in the source
- e.uoh.gu.n2phy.11049.20262
- Education-form source code
- HS
- Education code in the source
- N2PHY
- Change time according to the source
- 2026-08-31T06:49:47
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.