A lead bullet of mass m = 10.0 g is travelling with a velocity of V0 = 100 m/s when it strikes a wooden block. The block has a mass of M = 1.00 kg and is at rest on the table, as shown in the diagram below. The bullet embeds itself in the block and after the impact they slide together. All the kinetic energy that is lost in the collision is converted into heat. Assume that all this heat goes into heating up the bullet. (i) What is the speed of the wooden block after the collision?

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Chapter1: Units, Trigonometry. And Vectors
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A lead bullet of mass m = 10.0 g is travelling with a velocity of V0 = 100 m/s when it strikes a wooden block. The block has a mass of M = 1.00 kg and is at rest on the table, as shown in the diagram below. The bullet embeds itself in the block and after the impact they slide together. All the kinetic energy that is lost in the collision is converted into heat. Assume that all this heat goes into heating up the bullet.


(i) What is the speed of the wooden block after the collision? 
(ii) How much heat is generated as a result of the collision?

 

 

 

 

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Transcribed Image Text:M Vo
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