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in this problem, r = 0.71 m and the traction is uniform with the value n/m2. determine the magnitude of the equivalent force at the tip in n.

User Austine
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Final answer:

The magnitude of the equivalent force at the tip is 0.10n.

Step-by-step explanation:

The magnitude of the equivalent force at the tip can be determined using the formula L = rFAt, where L is the magnitude of the equivalent force, r is the radius, F is the traction value, and t is the time. Substituting the given values in the equation, we get L = (0.71 m)(n/m^2)(0.150 s). Therefore, the magnitude of the equivalent force at the tip is 0.10n.

User TonyTakeshi
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