A 10 kg steel wheel in Figure 9, has a radius of 100 mm and rest on an inclined plans made of wood. If θ is increased so that the wheel begins to roll down the incline with constant velocity when θ = 1.2∘, determine the coefficient of rolling resistance, a) (Ans : 2.09 mm ) Figure Q9

A 10 kg steel wheel in Figure 9, has a radius of 100 mm and rest on an inclined plans made of wood. If θ is increased so that the wheel begins to roll down the incline with constant velocity when θ = 1.2∘, determine the coefficient of rolling resistance, a) (Ans : 2.09 mm ) Figure Q9

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A 10kg steel wheel in Figure 9, has a radius of 100 m m and rest on an inclined plans made of wood. If θ is increased so that the wheel begins to roll down the incline with constant velocity when θ = 1.2 , determine the coefficient of rolling resistance, a) (Ans : 2.09 m m ) Figure Q9

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