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Journal of Biomolecular Structure & Dynamics
|
April 1, 1996
The effect of nucleic acid geometry on counterion association
M C Olmsted
Journal of Molecular Biology
|
November 11, 1994
Excess counterion accumulation around branched nucleic acids
M C Olmsted, P J Hagerman
Biopolymers
|
November 11, 1991
Importance of oligoelectrolyte end effects for the thermodynamics of conformational transitions of nucleic acid oligomers: a grand canonical Monte Carlo analysis
M C Olmsted, C F Anderson, M T Record
Proceedings of the National Academy of Sciences of the United States of America
|
October 1, 1989
Monte Carlo description of oligoelectrolyte properties of DNA oligomers: range of the end effect and the approach of molecular and thermodynamic properties to the polyelectrolyte limits
M C Olmsted, C F Anderson, M T Record
Biophysical Journal
|
February 1, 1995
Grand canonical Monte Carlo molecular and thermodynamic predictions of ion effects on binding of an oligocation (L8+) to the center of DNA oligomers
M C Olmsted, J P Bond, C F Anderson, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Journal of Biomolecular Structure & Dynamics
|
April 1, 1996
The effect of nucleic acid geometry on counterion association
M C Olmsted
Journal of Molecular Biology
|
November 11, 1994
Excess counterion accumulation around branched nucleic acids
M C Olmsted, P J Hagerman
Biopolymers
|
November 11, 1991
Importance of oligoelectrolyte end effects for the thermodynamics of conformational transitions of nucleic acid oligomers: a grand canonical Monte Carlo analysis
M C Olmsted, C F Anderson, M T Record
Proceedings of the National Academy of Sciences of the United States of America
|
October 1, 1989
Monte Carlo description of oligoelectrolyte properties of DNA oligomers: range of the end effect and the approach of molecular and thermodynamic properties to the polyelectrolyte limits
M C Olmsted, C F Anderson, M T Record
Biophysical Journal
|
February 1, 1995
Grand canonical Monte Carlo molecular and thermodynamic predictions of ion effects on binding of an oligocation (L8+) to the center of DNA oligomers
M C Olmsted, J P Bond, C F Anderson, et al.
Page
of 1