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Hochschule Stralsund – University of Applied Sciences BSc Renewable Energies
Hochschule Stralsund – University of Applied Sciences

BSc Renewable Energies

Stralsund, Germany

7 Semesters

German

Full time

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Sep 2024

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Introduction

What are popular future technologies to increase energy efficiency? Can wind, water and sun cover the world's energy needs in times of energy transition? In the bachelor's program in Renewable Energies, you will learn to provide answers to these questions by acquiring scientifically sound, application-oriented and fundamental knowledge. Speaking of wind, water and sun: If you can't get enough of them, Stralsund University of Applied Sciences is the right place for you. With the campus directly on the Baltic Sea, we offer you a unique study and leisure experience!

overview

  • Degree program - Renewable Energies - Bachelor (REB)
  • Faculty - Faculty of Electrical Engineering and Informatics
  • Start of studies - winter semester
  • Approval - no approval
  • Length of study - 7 semesters
  • Credit points - 210 ECTS
  • Degree - Bachelor of Science (B.Sc.)
  • Lecture language - German

requirements

  • General higher education entrance qualification (Abitur) or
  • Technical college entrance qualification or
  • Master's degree or an equivalent professional training or technical school examination (more information from the General Student Advisory Service) or
  • entrance exam

Summary

The Renewable Energies course offers you a varied degree that prepares you for the diverse fields of activity in the growth sector of renewable energy generation. It lets you actively participate in the energy revolution. The course comprises six consecutive semesters and is completed in the 7th semester with the practical phase in a company and the subsequent bachelor thesis. From the 4th semester you can choose one of the two specializations: electrical energy systems or thermal energy systems.

Because not everything is just a question of technology, personal development and the teaching of basic social, economic, ergonomic and legal skills are also important to us. With the successful completion of your studies, you will be awarded the academic degree "Bachelor of Science". After that, nothing stands in the way of your career in the field of regenerative and conventional energy technology! Would you prefer to continue researching? No problem! Alternatively, you can successfully continue your studies in a national or international master’s degree.

goals and career prospects

The 7-semester bachelor's degree in regenerative energies prepares you for a wide range of fields of activity in the growth sector of renewable energy generation and use. To do this, you will deal with the scientific and technical aspects of this future technology in an interdisciplinary manner, taking into account economic and ecological issues. Specialized professional training in two areas of specialization and the special practical relevance enable you to act independently. You will quickly familiarize yourself with the wide range of regenerative energy technologies and systems and their integration into energy supply networks. You will also open up new areas of the energy transition. As a graduate, you can react flexibly to the constantly evolving requirements in practice and enter the rapidly growing market of future energies directly.

Program structure

The study of renewable energies is as varied as this future technology is exciting! During your studies, you will work out the broad spectrum of renewable energy technologies and systems and their integration into energy supply networks in a goal-oriented manner. In project work and the practical phase, you will then immediately put the knowledge you have learned into practice. This means that you are well prepared to react flexibly to the constantly changing requirements of the professional world.

Overview of studies with a focus on electrical energy systems

  • Mathematics I
  • physics
  • Electrical Engineering I
  • Basics of chemistry
  • Materials Engineering I
  • Introduction to regenerative energy technologies
  • Consolidation of the fundamentals
  • Time and self management
  • mathematics II
  • Electrical engineering II
  • Materials Engineering II
  • Basics of electronics
  • Engineering fundamentals
  • Technical English
  • thermodynamics
  • fluid mechanics
  • modeling and simulation
  • Control and actuator technology
  • Technical mechanics
  • Basics of energy conversion
  • Regenerative Energy Converters I
  • Measurement and sensor technology
  • Basics of construction
  • Control engineering I
  • Basics of solar systems
  • Electrical machines
  • power electronics
  • Regenerative energy converters II
  • hydrogen technology
  • plant planning
  • low-voltage systems
  • Electric power generation
  • EES I elective module
  • project work
  • Fundamentals of regenerative energy systems
  • Project Regenerative Energy Systems
  • energy
  • energy storage
  • Integrative elective module
  • presentation and rhetoric
  • Basics of Business Administration
  • electric energy supply
  • EES II compulsory elective module
  • practical phase
  • Bachelor thesis with colloquium

Study overview focus on thermal energy systems

  • Mathematics I
  • physics
  • LP Physics
  • Electrical Engineering I
  • LP Electrical Engineering I
  • Basics of chemistry
  • Materials Engineering I
  • Introduction to regenerative energy technologies
  • Consolidation of the fundamentals
  • Time and self management
  • mathematics II
  • Electrical engineering II
  • LP Electrical Engineering II
  • Materials Engineering II
  • Basics of electronics
  • Engineering fundamentals
  • Technical English
  • thermodynamics
  • fluid mechanics
  • modeling and simulation
  • Control and actuator technology
  • Technical mechanics
  • Basics of energy conversion
  • Regenerative Energy Converters I
  • Measurement and sensor technology
  • LP measurement technology
  • Basics of construction
  • Control engineering I
  • LP Control Engineering I
  • Basics of solar systems
  • Electrical machines and power electronics
  • thermal energy systems
  • Regenerative energy converters II
  • hydrogen technology
  • plant planning
  • Basics of process engineering
  • Compulsory Elective Module - WES I
  • Compulsory Elective Module - WES II
  • project work
  • Fundamentals of regenerative energy systems
  • Project Regenerative Energy Systems
  • energy
  • energy storage
  • Integrative elective module
  • presentation and rhetoric
  • Basics of Business Administration
  • Regenerative energy converters III
  • flow machines
  • LP flow machines
  • practical phase
  • Bachelor thesis with colloquium

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