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Electrostatic Attraction between Two Charged Surfaces:  A (N,V,T) Monte Carlo Simulation

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The Journal of Physical Chemistry B 101 (42) 8584 (1997)
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Perspectives in Chemical Engineering - Research and Education

H. Ted Davis
Advances in Chemical Engineering, Perspectives in Chemical Engineering - Research and Education 16 169 (1991)
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Particle Deposition & Aggregation

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Particle Deposition and Aggregation

M. Elimelech, J. Gregory, X. Jia and R.A. Williams
Particle Deposition and Aggregation 33 (1995)
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Attractive double layer forces from hard‐core correlations

P. G. Bolhuis, T. Åkesson and Bo Jönsson
The Journal of Chemical Physics 98 (10) 8096 (1993)
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Electrostatic contributions to the binding of Ca2+ in calbindin mutants

Bo Svensson, Bo Jönsson and Clifford Woodward
Biophysical Chemistry 38 (1-2) 179 (1990)
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John Gregory and Charles R. O'Melia
Critical Reviews in Environmental Control 19 (3) 185 (1989)
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Enhanced counterion localization induced by surface charge modulation

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Osmotic interactions between neutral surfaces in an electrolyte solution

D. Bratko and D. Henderson
Physical Review E 49 (5) 4140 (1994)
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Membrane electrostatics

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Biochimica et Biophysica Acta (BBA) - Reviews on Biomembranes 1031 (3) 311 (1990)
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Modeling and Experimental Data for the Reverse Micellar Extraction of Proteins Using a New Surfactant

Seyed N. Ashrafizadeh and Mohammad K. Khoshkbarchi
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Monte Carlo simulations of colloidal stability—beyond the Poisson—Boltzmann approximation

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Electrochimica Acta 36 (11-12) 1723 (1991)
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Universal reduction of pressure between charged surfaces by long-wavelength surface charge modulation

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In situ ion induced gelation of colloidal dispersion of Laponite: Relating microscopic interactions to macroscopic behavior

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Osmotic pressure and salt exclusion in electrostatically swollen lamellar phases

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Electric double layer forces in the presence of polyelectrolytes

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Biochemistry 30 (21) 5209 (1991)
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Electrostatic interactions in protein solution-a comparison between poisson-boltzmann and Monte Carlo calculations

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Biopolymers 31 (10) 1149 (1991)
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Engineering Photocatalytic Cements: Understanding TiO2 Surface Chemistry to Control and Modulate Photocatalytic Performances

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(N,V,T) Monte Carlo Study of the Electrostatic Forces between Charged Lamellae: Influence of Surface Charge Localization

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