A 0.005kg lead bullet is traveling at a speed of 200 m/s when it embeds in a wood post. If we assume that a third of the resultant heat energy generated remains with the bullet, what is the increase in temperature of the embedded bullet? (specific heat of lead = 0.0305 kcal/kg×°C, 1 kcal = 4186 J)
A 0.005kg lead bullet is traveling at a speed of 200 m/s when it embeds in a wood post. If we assume that a third of the resultant heat energy generated remains with the bullet, what is the increase in temperature of the embedded bullet? (specific heat of lead = 0.0305 kcal/kg×°C, 1 kcal = 4186 J)
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter14: Heat And Heat Transfer Methods
Section: Chapter Questions
Problem 52PE: During heavy exercise, the body pumps 2.00 L of blood per minute to the surface, where it is cooled...
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A 0.005kg lead bullet is traveling at a speed of 200 m/s when it embeds in a wood post. If we assume that a third of the resultant heat energy generated remains with the bullet, what is the increase in temperature of the embedded bullet? (specific heat of lead = 0.0305 kcal/kg×°C, 1 kcal = 4186 J)
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