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step-change in organic semiconductor material design by directly harnessing the power of vibrational modes to improve their functionality in optoelectronic applications. This will be achieved by
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: Structural integrity of materials is of primary concern in sustainable mechanical design, as more durable products impose longer product lives and allow the usage of less material. Accounting for structural
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challenges. Driven and Creative: Passionate about innovation and able to think outside the box. Detail-Oriented: Strong attention to detail and commitment to producing high-quality work. Collaborative: Capable
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arthritis. In the project, the scholar will obtain qualifications within among others Design, acquisition, and analysis of single-unit afferent recordings using microneurography Design, acquisition, and
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together, large and small, contribute to a better world. We look forward to receiving your application! The Wallenberg Launchpad (WALP)-funded research group in the division of Materials Design is seeking a
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and practical applications such as dynamic metalenses or holograms. The detailed project will be designed together with the selected candidate. Examples of recent research from our group in
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an international team led by Professor Klas Tybrandt and is part of the Laboratory of Organic Electronics (LOE). We develop composite materials, design concepts and devices for soft and deformable
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within materials chemistry, primarily focused on discovery of novel 2D intermetallic materials for energy and environmental applications. The Materials Design division is currently active in the design and
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level, using e.g. diffraction, spectroscopy and advanced microscopy. IFM currently has about 400 employees organized in more than 10 divisions. You will be employed in the Materials Design division