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PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
, or equivalent, in physics, applied physics, optics/photonics, nanoscience, materials science, electrical engineering, or a closely related field. Fluency in English is mandatory. A documented
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completed courses within the field of physics comprising at least 120 credits. Applicants should have a Master’s degree, or equivalent, in physics, applied physics, optics/photonics, materials science
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education to enable regions to expand quickly and sustainably. In fact, the future is made here. The Department of Physics currently has about 100 employees and conducts research in areas such as Material
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project focusing on circular construction and the use of reclaimed and reused building materials. The employment is part-time (50%) on a permanent basis with starting date in October 2026 or according
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. The last day to apply is 2026-10-15 on ERSFs website .Starting date is 2026-12-01 or by agreement. Project description and tasks Thesis subject: Probing conformational membrane protein dynamics by time
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the recruitment process. Application Applications must be submitted through Umeå University's recruitment system Varbi and received no later than 13 September 2026. For this recruitment process, you only need
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of Architecture is looking for Teaching Assistants in two different areas; one to our workshop and two to our communications department. When applying, you will be asked to specify which area(s) you are interested
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, Materials Science, or Applied physics, related to materials for sustainable technologies in a wide context (link) Molecular biology, plant physiology, ecology, environmental science or geoscience
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, Materials Science, or Applied physics, related to materials for sustainable technologies in a wide context (this advertisement) Molecular biology, plant physiology, ecology, environmental science or
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within red blood cells. Disease arises from the destruction of red blood cells and the accumulation of infected cells within microvasculature inside organs in a process termed organ sequestration