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Overview We have exciting opportunity to join a multi-centre study to track disease progression in motor neurone disease (MND). The study will use high density surface EMG and will focus
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or equivalent Skills/Qualifications • A PhD in Materials Science, Physics, Chemistry, Chemical Engineering, Computer Science, or a related field. • Demonstrated experience in one or more of the following: Density
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applications is open for a Research Grant (BI) within the scope of the project “‘VIMOS – Virtual Integrated Market Online Shopping’, with SIID topology - Business R&D - Co-promotion - Low Density, project number
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applications is open for a Research Grant (BI) within the scope of the project “VIMOS – Virtual Integrated Market Online Shopping”, with SIID topology - Business R&D - Co-promotion - Low Density, project number
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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cutting-edge technologies to dissect these interactions: high-density microelectrode arrays (HD-MEAs) for large-scale electrophysiology, spatial transcriptomic methods, and human iPSC-derived neuronal
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size and density approaches. Demonstrated experience in infrared spectroscopy of soils and use of multivariate statistical models to predict soil properties. Experience in process-based models
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aerial vehicle (UAV) technology make them a promising solution to densify ELA monitoring. However, expanding the density of meteorological sensors in the ELA to bridge the spatiotemporal meteorological
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vibrations), and structural (migration of atoms) effects with an atomistic resolution. This can be achieved by self-consistently coupling molecular dynamics (MD), density-functional theory (DFT), and quantum
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become evident. At densities where their de-Broglie wavelengths overlap, a quantum-degenerate gas is formed, either a Bose-Einstein condensate (for bosons) or a degenerate Fermi gas (for fermions