Michael Monine

Affiliations: 
Princeton University, Princeton, NJ 
 Los Alamos National Laboratory, Los Alamos, NM, United States 
Area:
Computational biology and cell signaling
Website:
http://cnls.lanl.gov/External/people/Michael_Monine.php
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"Michael Monine"

Parents

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Leonid M. Pismen grad student 2003 Technion
 (Pattern Formation on Catalytic Surfaces.)
Stanislav Y. Shvartsman post-doc 2004-2005 Princeton
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Publications

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Berezhkovskii AM, Monine MI, Muratov CB, et al. (2006) Homogenization of boundary conditions for surfaces with regular arrays of traps. The Journal of Chemical Physics. 124: 036103
Monine MI, Berezhkovskii AM, Joslin EJ, et al. (2005) Ligand accumulation in autocrine cell cultures. Biophysical Journal. 88: 2384-90
Berezhkovskii AM, Makhnovskii YA, Monine MI, et al. (2004) Boundary homogenization for trapping by patchy surfaces. The Journal of Chemical Physics. 121: 11390-4
Monine MI, Pismen LM, Imbihl R. (2004) A realistic kinetic Monte Carlo simulation of the faceting of a Pt(110) surface under reaction conditions. The Journal of Chemical Physics. 121: 11332-44
Monine MI, Pismen LM. (2004) Realistic kinetic Monte Carlo study of the surface phase reconstruction. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 69: 021606
Pismen L, Monine M, Tchernikov G. (2004) Patterns and localized structures in a hybrid non-equilibrium Ising model Physica D: Nonlinear Phenomena. 199: 82-90
Monine M, Pismen L. (2002) Reconstruction and roughening of a catalytic Pt(110) surface coupled to kinetic oscillations. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 66: 051601
Monine M, Pismen L, Bär M, et al. (2002) Modeling triangular titration fronts in the O2+H2 reaction on a catalytic Rh(111) surface The Journal of Chemical Physics. 117: 4473-4478
Monine MI, Schaak A, Rubinstein BY, et al. (2001) Dynamics of subsurface oxygen formation in catalytic water formation on a Rh(1 1 1) surface - Experiment and simulation Catalysis Today. 70: 321-330
Monine M, Pismen L. (2001) Roughening of catalytic surface due to reversible surface reconstruction coupled with oscillatory dynamics: a Monte Carlo study Catalysis Today. 70: 311-320
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