1)A piece of ice with a mass of 60 g is transferred directly from the freezer at a temperature of –7°C to a polystyrene cup containing 200 g of water at 75°C. Calculate the final temperature of the water. Ignore any heat lost to the cup and its surroundings

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter21: Heat And The First Law Of Thermodynamics
Section: Chapter Questions
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1)A piece of ice with a mass of 60 g is transferred directly from the freezer at a temperature
of –7°C to a polystyrene cup containing 200 g of water at 75°C. Calculate the final
temperature of the water. Ignore any heat lost to the cup and its surroundings

2)A passenger train has six identical cars with a mass of 1500 kg each. They are accelerating at
0.80 m/s2
[forward]. Calculate the tension in the coupling between car 4 and car 5.

3)A boy in a wagon starts from a rest position and then goes down a straight ramp, gaining
speed with uniform acceleration as he travels. In 6.00 s, he is travelling at 4.2 m/s

a)What is his velocity at 10.0 s?

b)How long will it take him to reach a speed of 28.0 m/s?

 

4)A golfer can drive a ball with a velocity of 80.0 m/s [10º from the horizontal]. Assume no air resistance.
a) How long is the ball airborne before it hits the ground?

b) How far will the ball travel horizontally before it hits the ground?

 

5)A hockey puck of mass 0.170 kg is sliding along the ice with negligible friction. It then
hits a rough patch that exerts a frictional force of 0.340 N [S].

 Determine the puck’s acceleration as it slides on the rough section of ice.

6)A child’s wagon with rubber tires is being pulled along a street. The wagon and its load have
a combined mass of 28.0 kg. The coefficient of friction for rubber on dry asphalt is 1.07.

a) Find the force of friction.

b) How large must the pulling force be in order to get the wagon to accelerate at 0.50 m/s2
[forward]?

c) Assuming that the wagon starts from a rest position, find its velocity after 22.0 s.

7) . A child with a mass of 43.0 kg is swinging on a swing 2.60 m above the ground at
maximum amplitude.
a) Find the child’s potential energy at 2.60 m

b) How fast is the child moving when she is 1.25 m above the ground?

 

 

 

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