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Field
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, field effect transistors, photorefractive devices and photovoltaic cells require high performing organic semiconducting materials. This project focuses on using liquid crystals and liquid crystal polymers
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applied to liquid crystal sample and resulting dynamic phenomena will be systematically registered and analyzed. The candidate (M/F) will be closely guided by advisors and host group Singular and will
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objective of this project is to design and implement new experimental systems and theoretical models, based on confined chiral liquid crystals, allowing us to specifically determine how the chirality of a
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involved in our scientific activities, such as weekly group meetings and monthly colloquia, and will mainly work in collaboration with local researchers working on liquid crystals (Guilhem Poy, Maurizio
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March 2025. The postholder will work on the design and development of a new vectorial beam measurement system. Among other activities, this will involve investigating liquid crystal-based devices
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the dynamics of charge/discharge processes in electrolyte and ionic liquid systems [see, e.g., Pireddu et al., doi: 10.26434/chemrxiv-2023-2ccrw]. Understanding how the solution environment impacts crystal
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RAP opportunity at National Institute of Standards and Technology NIST Dynamic Atomistic Predictions of Crystalline, Crystal Defect and Liquid Metal Properties Location Material Measurement
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experimental chemists, physicists, and engineers. The project will use a well-documented optical technique to develop an exciting novel setup for in-situ investigation of liquid crystals lubricants in
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emphasis on the statistical mechanics of liquid-solid interfaces. The successful candidate will work in the group of Dr Stephen Cox and the broad aims of the project are to elucidate the structure and
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Grant awarded to Professor Apala Majumdar in the Department of Mathematics and Statistics at the University of Strathclyde. The project focuses on the mathematical modelling of nematic liquid crystals in