3. A mass m 3.0 kg swings down on a string of length 1.2 m. The initial angle of the string is 45 degrees. At its lowest point it strikes and attached itself to a mass of 5.0 kg. Both objects remaining attached slide over a horizontal surface with coefficient of friction = 0.20. How far will both blocks slide before coming to a complete stop? L= 1.2 m 3.0 kg 5.0 kg d = ? µ= 0.20
3. A mass m 3.0 kg swings down on a string of length 1.2 m. The initial angle of the string is 45 degrees. At its lowest point it strikes and attached itself to a mass of 5.0 kg. Both objects remaining attached slide over a horizontal surface with coefficient of friction = 0.20. How far will both blocks slide before coming to a complete stop? L= 1.2 m 3.0 kg 5.0 kg d = ? µ= 0.20
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![3. A mass m 3.0 kg swings down on a string of length 1.2 m. The initial angle of the string is 45 degrees.
At its lowest point it strikes and attached itself to a mass of 5.0 kg. Both objects remaining attached slide
over a horizontal surface with coefficient of friction = 0.20. How far will both blocks slide before coming to
a complete stop?
L= 1.2 m
45°
3.0 kg
5.0 kg
d = ?
u = 0.20](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff96ff654-64d1-41bc-8ff4-bb2669567aa5%2F67dc342a-26f6-4f94-964e-eb427be9ce8a%2F3qamilq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. A mass m 3.0 kg swings down on a string of length 1.2 m. The initial angle of the string is 45 degrees.
At its lowest point it strikes and attached itself to a mass of 5.0 kg. Both objects remaining attached slide
over a horizontal surface with coefficient of friction = 0.20. How far will both blocks slide before coming to
a complete stop?
L= 1.2 m
45°
3.0 kg
5.0 kg
d = ?
u = 0.20
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