2) Two masses are hung from a light string over a massless pulley. The masses are shown in various scenarios in the diagram below. Rank the acceleration of the masses from greatest to least. If they have the same acceleration, choose the same. E 2 kg 8 kg 2kg 1kg 4 kg 1 kg
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- 1) A body of mass 1 kg is acted on by a force as shown in the diagram. If the veloci- ty of the body is zero at t = 0, what is the velocity and distance traversed when t = 45 sec? Force 14 N 10 N 10 sec 30 sec 45 sec TimeQuestion 3 and 4 are togetherHow far (displacement) would a 4.0 N force need to push a 2.0 kg object to accelerate it from rest (0 m/s) to 10 m/s? 2.5 m 5.0 m 25 m 80 m
- 1 s² a m 1.0 0.8 0.6 0.4 0.2 0.02 0.04 0.06 0.08 O a. 4g O b. 25g O c. 20g O d. 20g O e. 15g 0.10 kg mass In Newton's second law experiment the relation between the reciprocall of the acceleration and the mass added over the cart (m). find the hanged mass mh (take g=10m/s2) Time left 0:57:57A block of mass 1.2 kg attached to a cord running over a pulley is dragged along a level surface by a hanging mass 0.2 kg, which was originally at rest. The coefficient of friction between the block and surface is 0.2. a) What is the tension in the cord? b) What is the acceleration of the system? c) How far down does the 0.2 kg mass descend in 3seconds?A toy train accelerates with a constant acceleration of 1.0 meter per second squared. Thetrain consists of an engine with a mass of 450. grams pulling a box car with a mass of 75.0 grams and a caboose at the end with a mass of 55.0 grams. What force does the engine exert on the box car? What force does the box car exert on the engine? What force does the box car exert on the caboose? What force does the caboose exert on the box car? For the purposes of this question you may ignore the force of friction though of course, the train would have a mighty hard time accelerating without being able to exert a frictional force on the track.
- In the given figure below, both masses m1 and m2 are attached with a string. Mass m1 is moving on its right, and mass m2 is moving downwards. What is the force, which is opposite to the friction, on the mass m1 (mass on the table). m1 M-₂ O Tension on the string, acting on the left side of mass m1 Weight of mass m1 O Normal force on mass m1 No answer text provided. O Tension on the string, acting on the right side of mass m1A pickup truck with a mass of 980 kg is initially at rest. The truck accelerates to a speed of 95 km/hr within a distance of 60 meters. a) What is the direction and size of the force that acts on the truck? b) If the truck were carrying a load of 200 kg, what new force would be required to achieve the same acceleration?An object is at rest on a table. The earth is pulling this object down with a force of magnitude m · g. If we consider this force as the action of an action-reaction pair, what is the reaction force of this force m · g? a) The table pushes the object up b) The object pulls up to the ground c) The earth pushes up the table d)The object pushes the table down e)The table pushes down to the ground
- Two objects, A and B, are in contact with each other on a frictionless surface. Object A has a mass of 5 kg, while object B has a mass of 3 kg. Object A exerts a force of 20 Newtons on object B. According to the Third Law of Motion, what is the magnitude of the force exerted by object B on object A? A) 8 N B) 12 N C) 15 N D) 20 NTwo people each have a mass of 125 KG they are both in an elevator that has a massive 200 KG when the elevator begins to move the people in the elevator have an upward acceleration of 1.5m/s^2 what is the net force The X on the elevator as it accelerates upwards at 1.50 m/s^2?When a force F is applied to an object of mass M, the acceleration of the object is A . If you apply half the force to an object of half the mass, what will its acceleration be? O A /4 O A/2 O A 2A 4A O None of the above