Sort by
Refine Your Search
-
Listed
-
Category
-
Field
-
elastic constants of cubic crystals from HSNM and EBSD correlative measurements [2]. Such a mechanical correlative microscopy approach was also used to study the effect of oxygen content on titanium's
-
of complex coacervate core micelles. The latter will be prepared and characterized thoroughly both in bulk and at the interface using scattering techniques and cryo-transmission electron microscopy in
-
PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
microscopy (SEM) experiments will be used to identify deformation mechanisms and establish structure–property relationships. At the University of Arizona (U of A), state-of-the-art nanoscale characterization
-
techniques to assess process outcomes, material quality, and device performance, including optical microscopy, photoluminescence, scanning electron microscopy (SEM), atomic force microscopy (AFM), x-ray
-
the characterization of (sub)cellular responses by fluorescence microscopy — with certain type of experiments to be performed independently following appropriate training; and (5) conducting mechanistic analyses
-
, and chromatography; +Characterizing ionochars using FTIR, NMR, microscopy, gas sorption volumetry, XPS, and calorimetry; +Investigating interactions between ionochars and PFAS by calorimetry; +Actively
-
manufacturing of nacres, properties of the materials). Know-how in material characterisation techniques (XRD, TGA, DLS/Laser granulometry, electron microscopy) and/or in rheology of suspensions is required
-
at the IRBI (Institute of Research in Insect Biology). The physiological mechanisms of growth will be measured by microscopy and physiological approaches, with a focus on the muscles, adipose tissue
-
electrochemical charge transfer kinetics investigated by electrochemical scanning microwave microscopy. Nanoscale Adv. 10.1039.D2NA00671E (2022) doi:10.1039/D2NA00671E. 3. Awadein, M. et al. Electrochemical
-
for cryo-electron microscopy (cryo-EM) data analysis, modeling conformational heterogeneity, and identifying optimal binding candidates, by integrating image analysis and docking across multiple structural