Two masses, mĄ and mg, are connected by a light string that passes over a fixed drum as shown. The coefficient of friction between the string and the drum is µ= 0.25. Take the acceleration due to gravity to be g = 9.81 m/s². Į g mB mB = 10 kg O mB = 6.8 kg O mB = 21.9 kg fixed drum MA If mA= 10 kg, calculate the smallest value of mg required to prevent the string from slipping. O mB = 4.6 kg

Classical Dynamics of Particles and Systems
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Two masses, mà and m³, are connected by a light string that passes over a fixed drum as shown. The coefficient of friction between the string and the
drum is µ= 0.25. Take the acceleration due to gravity to be g = 9.81 m/s².
g
тв
fixed
drum
MA
If mA= 10 kg, calculate the smallest value of må required to prevent the string from slipping.
O mB = 4.6 kg
O mB = 10 kg
O mB = 6.8 kg
mB = 21.9 kg
Transcribed Image Text:Two masses, mà and m³, are connected by a light string that passes over a fixed drum as shown. The coefficient of friction between the string and the drum is µ= 0.25. Take the acceleration due to gravity to be g = 9.81 m/s². g тв fixed drum MA If mA= 10 kg, calculate the smallest value of må required to prevent the string from slipping. O mB = 4.6 kg O mB = 10 kg O mB = 6.8 kg mB = 21.9 kg
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