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In Fig if F = 4N , m= 2 kg M = 4 kg then...

In Fig if `F = 4N , m= 2 kg M = 4 kg` then

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Three blocks of massage m_1,m_2 and m_3 are placed on a horizontal frictionless surface . A force of 40 N pulls the system then calculate the value of T , if m_1 = 10 kg , m_2 = 6 kg ,m_3 = 4 kg

Three blocks of mass m_1,m_2 and m_3 are placed on a horizontal frictionless surface . A force of 40 N pulls the system then calculate the value of T , if m_1 = 10 kg , m_2 = 6 kg ,m_3 = 4 kg

If m_1 = 10 kg, m_2 = 4kg and m_3=2kg the tension in the string connecting m_1 and m_2 is ,

In the system shown in fig., all pulleys are mass less and the string is inextensible and light. (a) After the system is released, find the acceleration of mass m_(1) (b) If m_(1) = 1 kg, m_(2) = 2 kg "and" m_(3) = 3 kg then what must be value of mass m_(4) so that it accelerates downwards?

Three blocks of masses m_1 , m_2 and m_3 are connected by massless strings on a frictionless table.They are pulled with a force T_3 = 40 N .If m_1 = 10 kg ,m_2 = 6 kg and m_3 = 4 kg . th tension T_2 will be : .

If m_1 =10kg, m_2 = 4kg and m_3 = 2kg the tension in the string connecting m_1 and m_2 is,

Three blocks of masses m _ 1 , m _ 2 and m_ 3 are connected by mass less string as shown kept on a frictionless table. They are pulled with a force T _ 3 = 40 N. If m _ 1 = 10 kg, m _ 2 = 6 kg and m _ 3 = 4kg , the tension T _ 2 will be

Three blocks of masses m _ 1 , m _ 2 and m_ 3 are connected by mass less string as shown kept on a frictionless table. They are pulled with a force T _ 3 = 40 N. If m _ 1 = 10 kg, m _ 2 = 6 kg and m _ 3 = 4kg , the tension T _ 2 will be