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Grubmuller, H., Heymann, B. & Tavan, P. Ligand binding: molecular mechanics calculation of the streptavidin biotin rupture force.
Further, browning differed minimally and no significant difference in rupture force was observed between methods.
Results showed that generally, rupture force, deformation and energy at rupture decreased as moisture content decreased.
Rupture force was examined along length (L), width (W), and breadth (B) axes.
By increasing the stiffness value and pulling speed the rupture force increased.
Mechanical stability of aggregates was expressed as their rupture force during penetration tests.
Usually, the dependency of the most probable rupture force on the force rate or the shape of the rupture force histogram is fitted with different models that contain approximations and basic assumptions.
Also, kernel rupture force and energy and the required energy for nut rupturing were significantly different for each cultivar.
The numerical results showed that it is possible to attain the FRP rupture force with a variable width solution.
The values of bulk density, true density and rupture force of grains decreased as the moisture content increased.
The rupture force was strongly dependent on the direction of applied force, indicating the existence of distinct unbinding pathways for the two force-loading modes.
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