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of the remarkable physical properties of plant cells, which are able both to withstand high osmotic pressures and to dynamically remodel themselves through the action of specific enzymes. The experimental approach
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and manage new building construction; support the Redefine the Possible initiative through our commitment to building a welcoming campus and by creating a dynamic physical environment for students
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maintenance and renovation to facilities; plan and manage new building construction; support the Redefine the Possible initiative through our commitment to building a welcoming campus and by creating a dynamic
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capital assets and invites you to join the dynamic team! https://www.csus.edu/administration-business-affairs/facilities-management/ Minimum Qualifications Abilities: Ability to read and write at a level
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Your Job: In the CrowdING project, you will analyze experimental data from large crowds and develop quantitative measures to describe their spatial structure. To do this, you will use and expand
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, metamaterials, and/or soil–structure interaction, and proven skills in experimental design and testing as well as numerical modelling (e.g., FEM). Experience with railway dynamics, soil mechanics, or nonlinear
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. We have particular strengths in membrane proteins and RNA biochemistry and are pioneers in all areas of biophysics, structural biology, biochemistry, and protein engineering and design. Please explore
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two-peak directional wind structure (frequent SW and less frequent NW/NNW strong winds) (Soomere, 2003), results in the frequent occurrence of high waves that approach the shore at a large angle
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UNIVERSIDAD CATÓLICA DE MURCIA - FUNDACIÓN UNIVERSITARIA SAN ANTONIO DE MURCIA | Spain | 11 days ago
vivo tumor modeling, contributing to the project: “FSCN1 as a structural modulator of the cytoskeleton in T-cell lymphomas: molecular and functional bases.” This project combines molecular biology
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range of metamaterial concepts. Building on these tools, the researcher will devise structural optimization strategies to tailor the metamaterial architecture for targeted dynamic performance. The most