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devices. The microneedles are manufactured by a collaborating group (Biomaterial Microsystems) at DTU Nanolab. The PhD candidate will be a part of the Pharmaceutical Technology group (see more information
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Job Description Are you up for the challenge of joining a highly ambitious research group involved in a joint project with international academic and industrial partners towards developing scalable
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academic groups and industrial entities in Europe and it addresses the development of a process chain targeting valorization of carbon dioxide to algal proteins. We, at DTU Chemical Engineering, will focus
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an innovative approach that utilize bacterial interactions and bacterial gene products to reduce or abolish virulence of the plant pathogen. You will become an integrated part of the research group of Professor
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related to your PhD project. You will also disseminate the results of your project at national and international conferences and interact with research groups at the forefront of international persistence
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group dedicated to protein-based solutions for sustainable development. Responsibilities and qualifications The overall role of the position is to lead and drive an innovative research group focused
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primarily experimental, complemented by numerical modeling, and will be carried out within the “Fiber Optics, Devices, and Nonlinear Effects” group at DTU Electro. As a PhD student, you will be part of a
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(ORR), oxygen evolution reaction (OER), and carbon dioxide (CO₂) reduction. Collaborating with theoretical research groups to guide the design of active site structures through computational modelling
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to work independently within a dynamic research environment Willingness to collaborate with other research groups Excellent skills in written and spoken English You should strive for scientific excellence
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may be obtained from Roberto Galeazzi, Associate Professor, Leader of the Control, Robotics and Embodied AI group at DTU Electro by sending an email to roga@dtu.dk . You can read more about the