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A Mass m1m_{1} Is Connected by a Light String That Passes Over a Passes

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A mass m1m_{1} is connected by a light string that passes over a pulley of mass MM to a mass m2m_{2} as shown in the figure. Both masses move vertically and there is no slippage between the string and the pulley. The pulley has a radius of 20.0 cm20.0 \mathrm{~cm} and a moment of inertia of 1/2MR21 / 2 \mathrm{MR}^{2} . If m1\mathrm{m}_{1} is 3.00 kg, m23.00 \mathrm{~kg}, \mathrm{~m}_{2} is 6.00 kg6.00 \mathrm{~kg} and M\mathrm{M} is 4.00 kg4.00 \mathrm{~kg} , then what is the tension in the string that is attached to mass m1\mathrm{m}_{1} ?
 A mass  m_{1}  is connected by a light string that passes over a pulley of mass  M  to a mass  m_{2}  as shown in the figure. Both masses move vertically and there is no slippage between the string and the pulley. The pulley has a radius of  20.0 \mathrm{~cm}  and a moment of inertia of  1 / 2 \mathrm{MR}^{2} . If  \mathrm{m}_{1}  is  3.00 \mathrm{~kg}, \mathrm{~m}_{2}  is  6.00 \mathrm{~kg}  and  \mathrm{M}  is  4.00 \mathrm{~kg} , then what is the tension in the string that is attached to mass  \mathrm{m}_{1}  ?   A)   27.4 \mathrm{~N}  B)   37.4 \mathrm{~N}  C)   30.2 \mathrm{~N}  D)   43.5 \mathrm{~N}  E)   20.8 \mathrm{~N}


A) 27.4 N27.4 \mathrm{~N}
B) 37.4 N37.4 \mathrm{~N}
C) 30.2 N30.2 \mathrm{~N}
D) 43.5 N43.5 \mathrm{~N}
E) 20.8 N20.8 \mathrm{~N}

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