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H-H Kohler

Showing results (1-10 of 6) with videos related to

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Biophysical Journal|August 1, 1977
A single-file model for potassium transport in squid giant axon. Simulation of potassium currents at normal ionic concentrationsH H Kohler
Journal of Mathematical Biology|May 1, 1980
The frequency of cyclic processes in biological multistate systemsH H Kohler, E Vollmerhaus
Journal of Colloid and Interface Science|December 25, 2007
Determination of the concentration dependence of polyelectrolyte diffusion coefficients by application of the Boltzmann gradient methodA T Wagner, H-H Kohler
Advances in Colloid and Interface Science|June 7, 2005
Selectivity and dynamic behavior of glass electrodesH-H Kohler, C Haider, S Woelki
Journal of Molecular Biology|March 5, 1992
Kinetic coupling between protein folding and prolyl isomerization. I. Theoretical modelsT Kiefhaber, H H Kohler, F X Schmid
Bio/Technology (Nature Publishing Company)|September 1, 1991
Protein aggregation in vitro and in vivo: a quantitative model of the kinetic competition between folding and aggregationT Kiefhaber, R Rudolph, H H Kohler, et al.
Pageof 1

Showing results (1-10 of 6) with videos related to

Sort By:
Pageof 1
Biophysical Journal|August 1, 1977
A single-file model for potassium transport in squid giant axon. Simulation of potassium currents at normal ionic concentrationsH H Kohler
Journal of Mathematical Biology|May 1, 1980
The frequency of cyclic processes in biological multistate systemsH H Kohler, E Vollmerhaus
Journal of Colloid and Interface Science|December 25, 2007
Determination of the concentration dependence of polyelectrolyte diffusion coefficients by application of the Boltzmann gradient methodA T Wagner, H-H Kohler
Advances in Colloid and Interface Science|June 7, 2005
Selectivity and dynamic behavior of glass electrodesH-H Kohler, C Haider, S Woelki
Journal of Molecular Biology|March 5, 1992
Kinetic coupling between protein folding and prolyl isomerization. I. Theoretical modelsT Kiefhaber, H H Kohler, F X Schmid
Bio/Technology (Nature Publishing Company)|September 1, 1991
Protein aggregation in vitro and in vivo: a quantitative model of the kinetic competition between folding and aggregationT Kiefhaber, R Rudolph, H H Kohler, et al.
Pageof 1