نتایج جستجو برای: interparticle forces

تعداد نتایج: 91131  

Journal: :Physical review. E 2016
Di Du Elaa Hilou Sibani Lisa Biswal

The dynamics of magnetorheological fluids have typically been described by the Mason number, a governing parameter defined as the ratio between viscous and magnetic forces in the fluid. For most experimental suspensions of magnetic particles, surface forces, such as steric and electrostatic interactions, can significantly influence the dynamics. Here we propose a theory of a modified Mason numb...

Journal: :Physical review letters 2009
Jason W Merrill Sunil K Sainis Eric R Dufresne

Electrostatic forces between small groups of colloidal particles are measured using blinking optical tweezers. When the electrostatic screening length is longer than the interparticle separation, forces are found to be non-pairwise-additive. Both pair and multiparticle forces are well described by the linearized Poisson-Boltzmann equation with constant potential boundary conditions. These findi...

Journal: :Monthly Notices of the Royal Astronomical Society 2013

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2001
D L Blair N W Mueggenburg A H Marshall H M Jaeger S R Nagel

We present a systematic investigation of the distribution of normal forces at the boundaries of static packings of spheres. A method for the efficient construction of large hexagonal-close-packed crystals is introduced and used to study the effect of spatial ordering on the distribution of forces. Under uniaxial compression we find that the form for the probability distribution of normal forces...

2018
Kae Jye Si Yi Chen Qianqian Shi Wenlong Cheng

Nanoparticle superlattices are periodic arrays of nanoscale inorganic building blocks including metal nanoparticles, quantum dots and magnetic nanoparticles. Such assemblies can exhibit exciting new collective properties different from those of individual nanoparticle or corresponding bulk materials. However, fabrication of nanoparticle superlattices is nontrivial because nanoparticles are noto...

Journal: :The Journal of chemical physics 2011
Mark J Pond Jeffrey R Errington Thomas M Truskett

Computer simulations are used to test whether a recently introduced generalization of Rosenfeld's excess-entropy scaling method for estimating transport coefficients in systems obeying molecular dynamics can be extended to predict long-time diffusivities in fluids of particles undergoing Brownian dynamics in the absence of interparticle hydrodynamic forces. Model fluids with inverse-power-law, ...

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