[填空题]
A bicyclist traveling with speed v=4.2m/s on a flat road is making a tf3w.t0e1e xf od5 (.kxewwxq9urn with a.1f0kxowx eww (td 53 q.f9exeyb*t:hh2 6yq /3mwn/ v )cshrq radius The forces acting:/3)qwh/q yy6 bhcn*th 2svr m on the cyclist and cycle are the normal force $\left(\mathbf{\vec{F}}_{\mathrm{N}}\right)$ and friction force $\left(\mathbf{\vec{F}}_{\mathbf{fr}}\right)$ exerted by the road on the tires, and $m\vec{\mathbf{g}}$ the total weight of the cyclist and cycle (see Fig. 8–56). (a) Explain carefully why the angle $\theta$ the bicycle makes with the vertical (Fig. 8–56) must be given by tan $\tan\theta=F_{\mathrm{fr}}/F_{\mathrm{N}}$ if the cyclist is to maintain balance.(round to the nearest integer) (b) Calculate $\theta$ for the values given. $^{\circ} $ (c) If the coefficient of static friction between tires and road is $\mu_s=0.70$ what is the minimum turning radius? m