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Your Job: In this Master`s thesis, you will conduct research on various load and working profiles related to non-road mobile machines (NRMM), covering both construction and agricultural machinery
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Your Job: However, one of the main hurdles related to AEMWE technology is to develop low-cost and robust catalysts that can withstand the harsh reaction environment without compromising
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for the construction of these technologies. The consideration of these requirements as part of the energy system analysis is still constrained by a number of data and methodological challenges. The aim of this master
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: Scientific and/or technical background (physics / electrical engineering etc.) Good grades in the current Master`s programme Good knowledge of English and German High degree of independence and effective way
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performance Your Profile: Current master studies in biomedical engineering, physics, computer science, mathematics, electrical/electronic engineering or in a related field Strong programming skills (Python
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are desirable but not essential You are a bachelor or master student in physics, materials science, or comparable. Able to use creative, analytical, and hands-on skills for problem solving. You are a curios
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: You will be contributing to an ongoing EU project - LOCALISED, in a team of experts with different scientific backgrounds. Upon completing this Master`s thesis, you will have achieved proficiency in
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Master studies in chemistry, chemical engineering, material science, or a comparable field of study Interest in the research field of battery development Previous experience in electrochemistry is an
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material. However, the question is, which forms and quantities of biomass can be used in the future without jeopardising the food supply of worlds growing population. The tasks of the master`s thesis are divided
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Your Job: You do research on supported lipid bilayers and biomimetic structures in order to optimize 3D structures geometries to allow SLB formation and preserve the biomembrane integrity on conductive polymers You characterize SLB formation and 3D structures geometries by means of...