Joel Koplik

Affiliations: 
Engineering City University of New York, New York, NY, United States 
Area:
Mechanical Engineering
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"Joel Koplik"

Children

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Borislav Busic grad student 2001 CUNY
Igor V. Baryshev grad student 2003 CUNY
Karla Morris grad student 2008 CUNY
Yiguang Yan grad student 2008 CUNY
Ahmad K. Al-Qananwah grad student 2012 CUNY
Rui Zhang grad student 2009-2013 CUNY
Weikang Chen grad student 2014 CUNY
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Publications

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Mozaffari A, Sharifi-Mood N, Koplik J, et al. (2016) Self-diffusiophoretic colloidal propulsion near a solid boundary Physics of Fluids. 28
Koplik J. (2015) Surface impacts and collisions of particle-laden nanodrops Physics of Fluids. 27
Lo TS, Koplik J. (2014) Channeling and stress during fluid and suspension flow in self-affine fractures. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 89: 023010
Chen W, Zhang R, Koplik J. (2014) Velocity slip on curved surfaces. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 89: 023005
Razavi S, Koplik J, Kretzschmar I. (2014) Molecular dynamics simulations: insight into molecular phenomena at interfaces. Langmuir : the Acs Journal of Surfaces and Colloids. 30: 11272-83
Razavi S, Kretzschmar I, Koplik J, et al. (2014) Nanoparticles at liquid interfaces: rotational dynamics and angular locking. The Journal of Chemical Physics. 140: 014904
Finkbeiner J, Watkins C, Koplik J. (2014) Molecular dynamics simulations of thermo-mechanical effects in nanodrop impact American Society of Mechanical Engineers, Fluids Engineering Division (Publication) Fedsm. 1
Zhang R, Farokhirad S, Lee T, et al. (2014) Multiscale liquid drop impact on wettable and textured surfaces Physics of Fluids. 26
Sharifi-Mood N, Koplik J, Maldarelli C. (2013) Molecular dynamics simulation of the motion of colloidal nanoparticles in a solute concentration gradient and a comparison to the continuum limit. Physical Review Letters. 111: 184501
Colosqui CE, Morris JF, Koplik J. (2013) Colloidal adsorption at fluid interfaces: regime crossover from fast relaxation to physical aging. Physical Review Letters. 111: 028302
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