Study content and requirements
Electrical Energy & Mobility Systems (EEMS) Degree Program
In the master’s degree program in Electrical Energy & Mobility Systems, you will deepen your technical knowledge and explore the key topics of modern energy and mobility systems. You will combine scientific fundamentals with practical applications and develop solutions to the challenges of sustainable energy supply and mobility.
Here's what you'll learn during your studies
In the Master’s program in Electrical Energy & Mobility Systems, you will develop the technical and methodological skills needed to comprehensively understand and further develop energy and mobility systems. You’ll deepen your knowledge in areas such as electrical energy systems, battery systems, power electronics, electrical machines, and smart grids, and learn to develop innovative solutions for the energy and mobility transition.
In addition to the technical content, you’ll strengthen your analytical skills and engage in scientific work, research, and development. As part of your specialization and your master’s thesis, you’ll address current issues from both practice and academia.
What You Should Bring
This program is right for you if you …
- have completed a bachelor’s degree in a technical or scientific field.
- are passionate about energy and mobility systems.
- want to understand and further develop complex technical concepts.
- enjoy working analytically and in a solution-oriented manner.
- feel at home in an international, English-speaking academic environment.
Here's how the application process works
Applications are submitted online via the CU Carinthia University of Applied Sciences application portal. After your documents have been reviewed, you will be invited to the next stage of the admissions process—provided you meet the admission requirements. You can find all information regarding application deadlines, required documents, and the application process on the application page.
Further Studies
Successful completion of the master’s program in “Electrical Energy & Mobility Systems” qualifies students to pursue a doctoral degree in accordance with § 6(4) of the FHStG [University of Applied Sciences Study Act].
General Information About the Program
For more information on admission requirements, the training contract, nostrification and recognition, the admissions process, examination regulations and grading, ECTS credits, and the academic calendar, please refer to the General Study Information.
Current Courses
Current course - EEMS - Electrical Energy & Mobility Systems · Organisation form: Vollzeit (English)
Are you ready to change the world with energy and innovation?
Help shape the energy and mobility systems of tomorrow–for a sustainable future.
Jobs & Careers
After Graduating with a Degree in Electrical Energy & Mobility Systems (EEMS)
Your Career Prospects After Graduation
The master’s program in Electrical Energy & Mobility Systems prepares you for challenging roles in the energy, electrical engineering, and mobility sectors. You’ll develop innovative technologies, work on sustainable energy solutions, or actively help shape the future of mobility. Thanks to the program’s hands-on training and in-depth academic focus, you’ll be well-positioned for careers in both industry and research and development.
You can work in these industries
Whether it’s the energy sector, electrical engineering, or the mobility industry—as a graduate, a wide range of career paths are open to you. For example, you could work for energy utilities, in the automotive and mobility industries, at engineering and consulting firms, or at research and development institutions. Universities and non-university research institutions also offer exciting career opportunities.
Here are the tasks you can expect
Depending on your area of work, you will develop and optimize energy and mobility systems, work on battery systems and electric drives, or plan smart power grids. In addition, you’ll support research and development projects, further develop technical innovations, and help put sustainable energy solutions into practice.