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Field
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dynamic, collaborative environment which consists of the groups of Daniela Kraft (colloidal model systems and microrobotics), Martin van Hecke (mechanical metamaterials and in-materia computing), Alexandre
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instruments designed to carry out studies on the structure of matter on a scale of one to hundreds of nanometers and up to microns. The range of science covered is broad, from polymer and colloid science
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Glasses are a mystery that confounds modern condensed matter physics, yet disordered, glassy assemblies form from particles at many length sclaes (granules, colloids, atoms). My research aims
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NIST only participates in the February and August reviews. Modeling and simulation of equilibrium properties and dynamic phenomena in soft materials such as polymers, colloids, and complex fluids
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The experimental soft matter community at the Leiden Institute of Physics is a dynamic, collaborative environment which consists of the groups of Daniela Kraft (colloidal model systems and microrobotics), Martin van
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handling station to quickly characterize and evaluate protein binding Characterize colloids in plant extracts including host cell proteins and different, pharmaceutically relevant proteins using
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(known as colloidal quantum dots). However, even state-of-the-art nanocrystal samples contain distributions in particle size and morphology that limit their optical performance. Two classes
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and elemental analysis, among others). - Morphological characteriztion electron microscopy, (SEM, TEM, etc...), DLS, etc. - Determine the main features of toxicity, colloidal stability, controlled
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David Butler [email protected] 301.975.2028 Yun Liu [email protected] 301.975.6235 Description Many interesting soft matter materials, such as colloidal solutions, hydrogels or protein formulations, may
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of novel colloidal camera-based technologies developed at KAUST into drone payloads and robotic platforms, enabling next-generation perception capabilities. The Research Specialist will contribute