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of Architecture at Aalto University, which offers a vibrant, interdisciplinary environment bridging architecture, landscape, and urbanism with emerging technologies and sustainability research Your experience and
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Aalto University is where science and art meet technology and business. We shape a sustainable future by making research breakthroughs in and across our disciplines, sparking the game changers
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universities. About the role Filamentous actin (F-actin) dynamically adopts various higher-order architectures to perform defined sub-cellular functions. A host of actin-binding proteins (ABPs) modulate
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. The ambition for this project is to carry out multidisciplinary research that will explore four new photovoltaic device concepts, enabling the next major step-change in PV efficiency. New device architectures
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have a PhD (or equivalent professional experience) in an appropriate engineering discipline (Naval Architecture/Civil/Structural Engineering /Mechanical/Renewable Energy/Engineering Management). The post
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have a PhD (or equivalent professional experience) in an appropriate engineering discipline (Naval Architecture/Civil/Structural Engineering /Mechanical/Renewable Energy/Engineering Management). The post
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major step-change in photovoltaic efficiency. New devices architectures, concentrator PV, quantum cutting, hot-carrier collection and photon transport, will be explored and enabled by absorber materials
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photovoltaic device concepts and paradigms, enabling the next major step-change in photovoltaic efficiency. New devices architectures, concentrator PV, quantum cutting, hot-carrier collection and photon
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universities. About the role Filamentous actin (F-actin) dynamically adopts various higher-order architectures to perform defined sub-cellular functions. A host of actin-binding proteins (ABPs) modulate
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) dynamically adopts various higher-order architectures to perform defined sub-cellular functions. A host of actin-binding proteins (ABPs) modulate the growth and stability of individual filaments or organise