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The dynamics of a flexible slender structure is determined as a function of the forces exerted by the fluid, its flexural rigidity and the tension necessary to enforce the filament inextensibility.
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In this case the displacement must be written as a function of the force.
Additionally, we computed entrainment ranges as a function of the forcing position with different coupling schemes.
Fig. 9 Entrainment ranges as a function of the forcing position for varying intersegmental connections.
Figure 8 illustrates 1 1 entrainment ranges for a chain of ten oscillators forced at the last oscillator as a function of the forcing strength (alpha_{mathrm{f}}).
In Fig. 3 A, the average unfolding time, τ u, is shown as a function of the applied force.
(c) The size of the scratched grooves as a function of the applied normal force.
A typical representation of this procedure, called the force gap test, is given in Fig. 5, where the normal force is plotted as a function of the gap width during the force gap test.
Figure 10 shows the force orientation (force inclination and force anteversion) as a function of the combined anteversion.
The modal values of the distributions of unfolding forces for each pulling speed were plotted as a function of the pulling speed to give a force spectrum.
The AFM measures the force as a function of the tip displacement and not directly as a function of the surface tip distance.
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CEO of Professional Science Editing for Scientists @ prosciediting.com