Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
Institut Lumière Matière ILM- UMR 5306 CNRS / Université Claude Bernard Lyon 1 | Villeurbanne, Rhone Alpes | France | 18 days ago
scattering (BLS) has been proposed. The BLS spectra, resulting from the interaction of laser light with density fluctuations, can be interpreted as the response of the sample to an infinitesimal uniaxial
-
performance? For UGM, particular attention will be paid to the influence of density during specimen preparation. Ideally, mycelium treatment should allow for lower densification levels while achieving
-
the group’s research and philosophy head over to www.d2r2group.com Qualifications Strong background in ab-initio calculations of materials (density functional theory) and high-performance computing
-
-density surface electromyography (HD-SEMG) has emerged as a potential diagnostic test capable of detecting the early stages of motor unit dysfunction. The aim of this project is to build on this work
-
organic radicals as novel charge transfer systems for use in fuel cells, electrolysers and batteries. Knowledge of computational modelling of materials/molecules using density functional theory (DFT) based
-
of the nanoparticles using luminescence thermometry. Study of the influence of surface charge and the chemical nature of the nanoparticles on the density fluctuations of the water hydration layer. 7. Applicable
-
enzyme active site density functional theory (DFT) ‘cluster’ or QM/MM models. The Hough group at Diamond develops methodologies for ambient temperature, time resolved macromolecular crystallography and
-
in-situ observation of crystal growth and the evaluation of material properties, with the hope of developing a crystal growth process that maximizes material functionality. Optimizing defect density
-
the A and/or B sites of the perovskite structure. The study will analyze the influence of chemical complexity and entropy-induced disorder on energy-storage density, energy efficiency, and
-
) for quantum entanglement and tomography in particle decays and measure these using data from the Large Hadron Collider (LHC) at CERN. Quantum tomography aims to reconstruct the full density matrix of proton