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The Figure Shows Mass M1 Resting on Top of Mass

Question 29

Multiple Choice

The figure shows mass m1 resting on top of mass m2 which is attached to a spring with spring constant 10 N/m,where m1 = m2 = 20 g.If the amplitude of the oscillation is 0.019 m.The masses are oscillating with SMH on a frictionless surface.What is the minimum coefficient of static friction between the two masses required to keep m1 from slipping off m2? The figure shows mass m<sub>1</sub> resting on top of mass m<sub>2</sub> which is attached to a spring with spring constant 10 N/m,where m<sub>1</sub> = m<sub>2</sub> = 20 g.If the amplitude of the oscillation is 0.019 m.The masses are oscillating with SMH on a frictionless surface.What is the minimum coefficient of static friction between the two masses required to keep m<sub>1</sub> from slipping off m<sub>2</sub>?   A) 0.60 B) 0.36 C) 0.12 D) 0.48 E) 0.24


A) 0.60
B) 0.36
C) 0.12
D) 0.48
E) 0.24

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