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#14-String-Constraint-2
(Physics) > Laws of Motion

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A block A of mass 7 kg is placed on a frictionless table. A thread tied to it passes over a frictionless pulley and carries a body B of mass 3 kg at the other end. The acceleration of the system is (given g = 10 ms–2) 

1. 100 ms–2

2. 3 ms–2

3. 10 ms–2

4. 30 ms–2

 85%
Level 1: 80%+
Hints

Using constraint equations relation between a1 and a2 will be 

1. a1 =3a2

2. aa2 =3a1

3. aa2= 6a1

4. aa2= 7a1

 71%
Level 2: 60%+
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A string with constant tension T is deflected through an angle 2θ0 by a smooth fixed pulley. The force on the pulley is

(a)2Tcosθ0
(b)Tcosθ0
(c)2Tsinθ0
(d)Tsinθ0

 68%
Level 2: 60%+
Hints

A massless, frictionless rope is attached at point \(A\) on the wall, then passes under a movable pulley \(P_2,\) goes up and over a fixed ceiling pulley \(P_1,\) and supports a hanging weight \(W_1.\) The movable pulley \(P_2\) carries a second weight \(W_2\)​ hanging directly beneath it. If \(W_1=W_2,\) what is the angle \((AP_2P_1)\) between the two rope segments meeting at \(P_2\text{?}\)
              
1. \(30^\circ\)
2. \(60^\circ\)
3. \(150^\circ\)
4. \(120^\circ\)

 56%
Level 3: 35%-60%
Hints

Two blocks of masses \(2\) kg and \(3\) kg are tied at the ends of a light inextensible string passing over a frictionless pulley as shown.

       

If the system is accelerating upward with acceleration \(5\) m/s2, the tension in the string is:
1. \(24\) N
2. \(36\) N
3. \(48\) N
4. \(18\)N

 61%
Level 2: 60%+
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