When s= 0, the spring on the firing mechanism is unstretched. The arm is pulled back such that s = 100 mm and released. Assume all surfaces of contact to be smooth. Neglect the mass of the spring and the size of the ball. (Figure 1) Part A - Determine the speed of the 0.4- kg ball when 0 - 60 Part B - Determine the normal reaction of the circular track on the on the ball when 8 = 60°

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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When s = 0, the spring on the firing mechanism is unstretched. The arm is pulled back such that s = 100 mm and
released. Assume all surfaces of contact to be smooth. Neglect the mass of the spring and the size of the ball. (Figure 1)
Part A - Determine the speed of the 0.4- kg ball when 8 = 60
Part B - Determine the normal reaction of the circular track on the on the ball when 8 = 60°
&-1500 N/m
1.5 m
Transcribed Image Text:When s = 0, the spring on the firing mechanism is unstretched. The arm is pulled back such that s = 100 mm and released. Assume all surfaces of contact to be smooth. Neglect the mass of the spring and the size of the ball. (Figure 1) Part A - Determine the speed of the 0.4- kg ball when 8 = 60 Part B - Determine the normal reaction of the circular track on the on the ball when 8 = 60° &-1500 N/m 1.5 m
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