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The Journal of Chemical Physics|January 3, 2020
Microscopic theory of the influence of strong attractive forces on the activated dynamics of dense glass and gel forming fluidsAshesh Ghosh, Kenneth S SchweizerSoft Matter|February 2, 2021
Activated penetrant dynamics in glass forming liquids: size effects, decoupling, slaving, collective elasticity and correlation with matrix compressibilityBaicheng Mei, Kenneth S SchweizerPhysical Review Letters|July 31, 2025
Medium-Range Order, Density Fluctuations, and Activated Relaxation in the Equilibrated Deep Glass RegimeBaicheng Mei, Kenneth S SchweizerThe Journal of Chemical Physics|January 30, 2024
Theoretical study of kinetic arrest, shear elastic modulus, and yielding in simple biphasic colloidal mixturesSubhasish Chaki, Kenneth S SchweizerThe Journal of Physical Chemistry. B|October 31, 2024
Medium-Range Structural Order as the Driver of Activated Dynamics and Complexity Reduction in Glass-Forming LiquidsBaicheng Mei, Kenneth S SchweizerThe Journal of Physical Chemistry. B|July 21, 2006
Thermodynamics, orientational order and elasticity of strained liquid crystalline melts and elastomersFolusho T Oyerokun, Kenneth S SchweizerThe Journal of Chemical Physics|June 3, 2017
Preface: Special Topic on Dynamics of Polymer Materials in Thin Films and Related GeometriesM D Ediger, Kenneth S SchweizerPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|July 23, 2008
Large-amplitude jumps and non-Gaussian dynamics in highly concentrated hard sphere fluidsErica J Saltzman, Kenneth S SchweizerPhysical Review Letters|November 29, 2014
Directing colloidal assembly and a metal-insulator transition using a quench-disordered porous rod templateRyan B Jadrich, Kenneth S SchweizerPhysical Review Letters|December 11, 2012
Microscopic theory of entangled polymer melt dynamics: flexible chains as primitive-path random walks and supercoarse grained needlesDaniel M Sussman, Kenneth S SchweizerPageof 15