A golf ball is launched with the initial conditions shown in the figure. Determine the radius of curvature of the trajectory and the time rate of change of the speed of the ball (a) just after launch and (b) at apex. Neglect aerodynamic drag. (a) Just after launch, determine the speed v of the ball, the total acceleration a of the ball, the normal component of acceleration an and the tangential component of acceleration at.

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Chapter1: Units, Trigonometry. And Vectors
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A golf ball is launched with the initial conditions shown in the figure. Determine the radius of curvature of the trajectory and the time rate of change of the speed of the ball (a) just after launch and (b) at apex. Neglect aerodynamic drag.

(a) Just after launch, determine the speed v of the ball, the total acceleration a of the ball, the normal component of acceleration an and the tangential component of acceleration at.

140
140
a
Answers:
V =
i
ft/sec
a =
i
ft/sec2
an =
ft/sec?
at =
i
ft/sec2
Transcribed Image Text:140 140 a Answers: V = i ft/sec a = i ft/sec2 an = ft/sec? at = i ft/sec2
A golf ball is launched with the initial conditions shown in the figure. Determine the radius of curvature of the trajectory and the
time rate of change of the speed of the ball (a) just after launch and (b) at apex. Neglect aerodynamic drag.
183 mi/hr
140
Part 1
(a) Just after launch, determine the speed v of the ball, the total acceleration a of the ball, the normal component of acceleration
an and the tangential component of acceleration aț.
Transcribed Image Text:A golf ball is launched with the initial conditions shown in the figure. Determine the radius of curvature of the trajectory and the time rate of change of the speed of the ball (a) just after launch and (b) at apex. Neglect aerodynamic drag. 183 mi/hr 140 Part 1 (a) Just after launch, determine the speed v of the ball, the total acceleration a of the ball, the normal component of acceleration an and the tangential component of acceleration aț.
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