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Question 2 (**) A light inextensible string of length 2.6 m has one end attached to a fixed point A and the other end attached to a particle P of mass 0.5 kg . P is moving with constant speed in a horizontal circle with radius 2.4 m and centre at the point O, which is vertically below A. a) Determine the tension in the string. Jan 16, 2020 · A 2 kg ball is swung in a vertical circle at the end of an inextensible string 2 m long. What are the speed and angular speed of the ball if the string can sustain maximum tension of 119.6 N. Given: Mass of body = m = 2 kg, radius of circle = r = 2 m, Maximum tension = T = 119.6 N,
25. Two blocks of masses M and m, with M > m, are connected by a light string. The string passes over a frictionless pulley of negligible mass so that the blocks hang vertically. The blocks are then released from rest. What is the acceleration of the block of mass M? (A) g (B) (M – m)g/M (C) (M + m)/Mg (D) (M – m)g/(M + m) 26. Two blocks A and B of masses 3m and m respectively are connected by a massless and inextensible string. The whole system is suspended by a massless spring as shown in the figure. The magnitudes of acceleration of A and B immediately after the string is cut, are respectively 57) As shown in the figure, two blocks are connected by a light string that passes over a frictionless pulley having a moment of inertia of 0.0040 kg ∙ m2 and diameter 10 cm. The coefficient of kinetic friction between the table top and the upper block is 0.30.
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Blocks 1 and 2 of masses ml and m2, respectively, are connected by a light string, as shown above. These blocks are further connected to a block of mass M by another light string that passes over a pulley of negligible mass and friction. A block of mass 9 kg, lying on a fric- tionless table, is connected to a block of mass 1 kg by means of a string which passes over a frictionless pulley as shown in Fig. 5.26. The tension in the string is (g = 10 m/s2) 9kg Ikg Fig. 5.26 In Q. 20, the common acceleration of the M (a) a+g M (c) a+g (b) 2g (d) 18. Two blocks A and B having masses ml
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The string is parallel to a line of greatest slope of the plane. The angle of inclination of the plane to the horizontal is 4where sin = 5, and the coe cient of friction between the block and the plane is 0.5. (i) Calculate the tension of the string in newtons. (ii) If the string is cut, nd the acceleration with which the block slides down the ...
4.2 In the diagram below, a 1 kg mass and a 2 kg mass are connected by an inextensible string of negligible mass. The string is passed over a light frictionless pulley so that the hang down as shown.masses Initially the system is held stationary. 4.2.1 Draw a labelled free-body diagram showing ALL the forces acting on the 2 kg mass. (2)
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two masses m1 and m2 are connected by an inextensible string and the system passes over a frictionless pulley . obtain a relationship between the acceleration of the system and tension in the srting. It consists of two unequal masses hung vertically over a frictionless pulley of negligible mass. Calculate the magnitude of the acceleration of the two masses and the tension in the string. Assume m 1 = 1.3 kg and m 2 = 2.8 kg. 5. Halliday/Resnick/Walker 5.34 6.
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An isolated smooth ring of mass M = 2m with two small beads each of mass m is as shown in the figure. Initially both the beads are at diametrically opposite points and have velocity (for each) in same direction. The speed of the beads just before they collide for the first time is (complete system is placed on a smooth horizontal surface and ...
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5. (14 pts) A block of mass m 0.5 kg rests on top of a block of mass m 2.0 kg. A string attached to the block of mass M is pulled so that its tension is T 6.0 N at a 200 angle to the horizontal as shown. The blocks move together. The coefficient of static friction at the 2.3 Calculate the magnitude of the tension T 1 in string P. (6) 2.4 When the 250 N force is replaced by a sharp pull on the string, one of the two strings break. Which ONE of the two strings, P or Q, will break? (1) QUESTION 2 (EXAMPLER 2014) A light inelastic string connects two objects of mass 6 kg and 3 kg respectively. They are pulled up
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5. (14 pts) A block of mass m 0.5 kg rests on top of a block of mass m 2.0 kg. A string attached to the block of mass M is pulled so that its tension is T 6.0 N at a 200 angle to the horizontal as shown. The blocks move together. The coefficient of static friction at the
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57) As shown in the figure, two blocks are connected by a light string that passes over a frictionless pulley having a moment of inertia of 0.0040 kg ∙ m2 and diameter 10 cm. The coefficient of kinetic friction between the table top and the upper block is 0.30. Dec 27, 2019 · There are many ways to do that. But first, let us understand what tension is. It is the force that the string exerts on the body that it is holding onto. Tension can only exist when an external force is in play.
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