mesoscale hydrodynamic simulation (Meso Scale Diagnostics LLC)
90
Structured Review
Meso Scale Diagnostics LLC
mesoscale hydrodynamic simulation
Mesoscale Hydrodynamic Simulation, supplied by Meso Scale Diagnostics LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mesoscale+hydrodynamic+simulation/mesoscale+hydrodynamic+modeling/10__1103_slash_physreve__110__055303-366-12-14
Average 90 stars, based on 1 article reviews
Mesoscale Hydrodynamic Simulation, supplied by Meso Scale Diagnostics LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mesoscale+hydrodynamic+simulation/mesoscale+hydrodynamic+modeling/10__1103_slash_physreve__110__055303-366-12-14
Average 90 stars, based on 1 article reviews
mesoscale hydrodynamic simulation - by Bioz Stars,
2026-10
90/100 stars
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other:Article Title: Numerical modeling of heterogeneous stimuli-responsive hydrogels Article Snippet: [36] Article Title: The influence of an applied magnetic field on the self-assembly of magnetic nanogels Article Snippet: Journal Article Title: Charged dendrimers in trivalent salt solutions under the action of DC electric fields. Article Snippet: The structural properties and electrophoretic mobility of charged dendrimers in 3:1 electrolyte solutions subjected to direct current electric fields are studied using molecular dynamics simulations.. The simulated dendrimer size is studied in zero fields and found to scale as Rg ∼ N. The dendrimers exhibit shape distortions when the applied electric field is larger than some critical value, which scales with the number of dendrimer monomers as Ez,crit ∼ N. Families of curves, such as the curves of the square of radius of gyration, the asphericity, the degree of prolateness, and the electrophoretic mobility of dendrimers, are shown to collapse to single, master curves in electric fields through appropriate scaling.. This reflects the fractal characteristics of these systems. Article Title: Solvent Induced Inversion of Core-Shell Microgels. Article Snippet: The morphology of core−shell microgels under different swelling conditions and as a function of the core−shell thickness ratio is systematically characterized by mesoscale hydrodynamic simulations.. With increasing hydrophobic interaction of the shell polymers, we observe drastic morphological changes from a core−shell structure to an inverted microgel, where the core is turned to the outside, or a microgel with a patchy surface of core polymers directly exposed to the environment.. We establish a phase diagram of the various morphologies. Article Title: In Silico Synthesis of Microgel Particles Article Snippet: Polymers 2014, 6 (5), 1602−1617. (34) Ghavami, A.; Kobayashi, H.; Winkler, R. G. Internal dynamics of Article Title: Bridging dynamic regimes of segmental relaxation and center-of-mass diffusion in associative protein hydrogels Article Snippet: [68] Article Title: Mesoscale hydrodynamic simulation of short polyelectrolytes in electric fields. Article Snippet: Downloaded to IP: 130.70.241.163 On: Sat, 20 Dec 2014 21:08:55 |