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enjoy working towards results and strive to deliver work of high scientific quality. The role requires that you collaborate well with others in the research environment while communicating clearly. We
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. Particular emphasis will be placed on understanding the relationships between catalyst structure, interfacial processes, local reaction environments, and electrochemical performance. The project aims
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)”, which seeks to establish new routes for efficient conversion of low-grade heat into electricity. Low-grade heat is abundant in our surroundings—from the human body and electronics to industrial processes
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omics data analysis. A high level of self-motivation and independence, good problem-solving skills, and the ability to work collaboratively in an interdisciplinary research environment. The ability
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Bridging (HEAT-BRIDGE)”, which seeks to establish new routes for efficient conversion of low-grade heat into electricity. Low-grade heat is abundant in our surroundings—from the human body and electronics
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Ionic Thermoelectric–Electronic Bridging (HEAT-BRIDGE)”, which seeks to establish new routes for efficient conversion of low-grade heat into electricity. Low-grade heat is abundant in our surroundings
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seeks to establish new routes for efficient conversion of low-grade heat into electricity. Low-grade heat is abundant in our surroundings—from the human body and electronics to industrial processes—yet
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part of a vibrant community of over 150 researchers, including professors, senior and junior scientists, and fellow PhD students. Our collaborative environment is multidisciplinary, fostering creativity
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operated within complex physiological environments. This includes investigating how structures such as vasculature (arteries, capillaries), neural pathways, and extracellular spaces can serve as access