A smooth can C, having a mass of 5 kg, is lifted from a feed at A to a ramp at B by a rotating rod. The rod maintains a constant angular velocity of 0 = 0.5 rad/s, Neglect the effects of friction in the calculation and the size of the can so that r from A to B is circular, having a radius of 600 mm. (Figure 1) (1.2 cos 0) m. The ramp Figure 1 of 1 B 0 = 0.5 rad/s 600 mm 600 mm

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Chapter7: Dry Friction
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A smooth can C, having a mass of 5 kg, is lifted from
a feed at A to a ramp at B by a rotating rod. The rod
maintains a constant angular velocity of 0 = 0.5 rad/s,
Neglect the effects of friction in the calculation and the
size of the can so that r= (1.2 cos 0) m. The ramp
from A to B is circular, having a radius of 600 mm
(Figure 1)
Figure
1 of 1
030.5 rad/s
600 mm
600 mm
Transcribed Image Text:A smooth can C, having a mass of 5 kg, is lifted from a feed at A to a ramp at B by a rotating rod. The rod maintains a constant angular velocity of 0 = 0.5 rad/s, Neglect the effects of friction in the calculation and the size of the can so that r= (1.2 cos 0) m. The ramp from A to B is circular, having a radius of 600 mm (Figure 1) Figure 1 of 1 030.5 rad/s 600 mm 600 mm
Determine the magnitude of the force which the rod exerts on the can at the instant 0 = 30°
Express your answer to three significant figures and include the appropriate units.
F =
Value
Units
Transcribed Image Text:Determine the magnitude of the force which the rod exerts on the can at the instant 0 = 30° Express your answer to three significant figures and include the appropriate units. F = Value Units
Expert Solution
Step 1

Given:

θ˙=0.5 rad/sθ¨=0r=1.2 cosθm=5 kgr=600 mm

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