A kinetic master equation model based on a nucleation-zipper pathway reproduces experimental shear rupture data for short dsDNA and shows that helical geometry is required to define end-to-end distance in the rod-like polymer model.
Temperature-Dependent Elastic Properties of
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A kinetic model of shear-induced rupture of short dsDNA
A kinetic master equation model based on a nucleation-zipper pathway reproduces experimental shear rupture data for short dsDNA and shows that helical geometry is required to define end-to-end distance in the rod-like polymer model.