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(Solved): INFO: Need to draw figure as free-body diagram for part (a). Question 2 (3 points). A flatbed truck ...




Question 2 (3 points). A flatbed truck is carrying a crate up a hill of angle of inclination \( \theta=10.0^{\circ} \), as th

INFO: Need to draw figure as free-body diagram for part (a).
Question 2 (3 points). A flatbed truck is carrying a crate up a hill of angle of inclination \( \theta=10.0^{\circ} \), as the figure illustrates. The coefficient of static friction between the truck bed and the crate is \( \mu_{\mathrm{s}}=0.350 \). Find the maximum acceleration that the truck can attain before the crate begins to slip backward relative to the truck. (1) Draw a free body diagram for this situation. Make sure your diagram includes the coordinates axes. (2) Write down Newton's \( 2^{2 /} \) law in terms of the \( x \) and \( y \) components of the net force and acceleration. (3) Find the maximum acceleration that the truck can attain before the crate begins to slip backward relative to the truck.


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Solution : Given : Angle of inclination ?=10? and ?s=0.350 Let a be the acceleration of the truck to restrict the crate to slip backward. Free body di
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