Put some lead shot into a glass tube, seal both ends of the tube, invert the tube quickly several times, and measure the temperature of the shot. If you assume that all the mechanical energy is converted into heat in the lead shot and that no heat is lost, what is the change in the temperature of the shot if the tube is 1.5 m long, there are 18 g of shot, and the tube is inverted 13 times? (The specific heat of lead is 0.128 kJ/kg · K.)

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Besides Joule's classic experiment, another way of demonstrating the equivalence between mechanical energy and heat is the following:
Put some lead shot into a glass tube, seal both ends of the tube, invert the tube quickly several times, and measure the temperature of the
shot. If you assume that all the mechanical energy is converted into heat in the lead shot and that no heat is lost, what is the change in the
temperature of the shot if the tube is 1.5 m long, there are 18 g of shot, and the tube is inverted 13 times? (The specific heat of lead is
0.128 kJ/kg · K.)
Transcribed Image Text:Besides Joule's classic experiment, another way of demonstrating the equivalence between mechanical energy and heat is the following: Put some lead shot into a glass tube, seal both ends of the tube, invert the tube quickly several times, and measure the temperature of the shot. If you assume that all the mechanical energy is converted into heat in the lead shot and that no heat is lost, what is the change in the temperature of the shot if the tube is 1.5 m long, there are 18 g of shot, and the tube is inverted 13 times? (The specific heat of lead is 0.128 kJ/kg · K.)
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