EBK WEBASSIGN FOR KATZ'S PHYSICS FOR SC
EBK WEBASSIGN FOR KATZ'S PHYSICS FOR SC
1st Edition
ISBN: 9781337684668
Author: Katz
Publisher: VST
bartleby

Concept explainers

Question
Book Icon
Chapter 21, Problem 84PQ

(a)

To determine

The amount of heat that need to flow into Zan to completely melt his body.

(a)

Expert Solution
Check Mark

Answer to Problem 84PQ

The amount of heat that need to flow into Zan to completely melt his body is 2.33×107J_.

Explanation of Solution

Zan is initially existing as ice at temperature 10.00°C (263.15K). The final state is water at 0°C (273.15K). The mass of the body is 65.88kg, the specific heat of ice is 2100J/kgK, and the latent heat of fusion of ice is 3.33×105J/kg.

In order Zan to completely melt his body, first the 10.00°C ice has to become 0°C ice, then the 0°C ice has to become 0°C water.

Write the expression for the heat corresponding to temperature change.

  Q1=mc(TfTi)                                                                                                     (I)

Here, Q1 is the heat, m is the mass, c is the specific heat, Tf is the final temperature, and Ti is the initial temperature.

Write the expression for the heat required for phase transition from solid to liquid.

  Q2=mLF                                                                                                               (II)

Here, Q2 is the heat required for phase transition, and LF is the latent heat of fusion.

Write the expression for the total heat absorbed by the body in the process.

  Qtot=Q1+Q2                                                                                                        (III)

Conclusion:

Substitute 65.88kg for m, 2100J/kgK for c, 273.15K for Tf and 263.15K for Ti in equation (I) to find Q1.

  Q1=(65.88kg)(2100J/kgK)(273.15K263.15K)=1.38×106J

Substitute 65.88kg for m, 3.33×105J/kg for LF in equation (II) to find Q2.

  Q2=(65.88kg)(3.33×105J/kg)=2.19×107J

Substitute 1.38×106J for Q1, and 2.19×107J for Q2 in equation (III) to find Qtot.

  Qtot=1.38×106J+2.19×107J=2.33×107J

Therefore, the amount of heat that need to flow into Zan to completely melt his body is 2.33×107J_.

(b)

To determine

The amount of additional heat required to make the water form of Zan’s body to become vapor at 100°C.

(b)

Expert Solution
Check Mark

Answer to Problem 84PQ

The amount of additional heat required to make the water form of Zan’s body to start vaporizing at 100°C is 2.76×107J_.

Explanation of Solution

Initial temperature of water is 0°C (273.15K), its mass is 65.88kg, and the final temperature is 100.0°C (373.15K).

Write the expression for the heat corresponding to the temperature change.

  Q=mc(TfTi)

Conclusion:

Substitute 65.88kg for m, 2100J/kgK for c, 373.15K for Tf and 273.15K for Ti in the above equation to find Q.

  Q=(65.88kg)(2100J/kgK)(373.15K273.15K)=2.76×107J

Therefore, the amount of additional heat required to make the water form of Zan’s body to start vaporizing at 100°C is 2.76×107J_.

(c)

To determine

The amount of additional heat required to make the 100°C water form of Zan’s body to vapor at 100°C.

(c)

Expert Solution
Check Mark

Answer to Problem 84PQ

The amount of additional heat required to make the 100°C water form of Zan’s body to vapor at 100°C is 1.486×108J_.

Explanation of Solution

The mass of water is 65.88kg, it undergoes phase transition from liquid to vapor at 100.0°C.

Write the expression for the heat corresponding to the phase transition from liquid to vapor.

  Q=mLV

Here, LV is the latent heat of vaporization (for water LV=2.256×106J/kg).

Conclusion:

Substitute 65.88kg for m, and 2.256×106J/kg for LV in the above equation to find Q.

  Q=(65.88kg)2.256×106J/kg=1.486×108J

Therefore, the amount of additional heat required to make the 100°C water form of Zan’s body to vapor at 100°C is 1.486×108J_.

(d)

To determine

The average kinetic energy of one of water vapor molecule that make up Zan.

(d)

Expert Solution
Check Mark

Answer to Problem 84PQ

The average kinetic energy of one of water vapor molecule that make up Zan is 6.88×1021_.

Explanation of Solution

The temperature of the water vapor is 100.0°C (373.15K).

Write the expression for the average kinetic energy of one molecule of water vapor.

  Kav=32kBT

Here, Kav is the average kinetic energy, kB is the Boltzmann constant, and T is the temperature.

Conclusion:

Substitute 1.23×1023J/K for kB, and 373.15K for T in the above equation to find Kav.

  Kav=32(1.23×1023J/K)(373.15K)=6.88×1021J

Therefore, the average kinetic energy of one of water vapor molecule that make up Zan is 6.88×1021_.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
You have just bought a new bicycle. On your first riding trip, it seems that the bike comes to rest relatively quickly after you stop pedaling and let the bicycle coast on flat ground. You call the bicycle shop from which you purchased the vehicle and describe the problem. The technician says that they will replace the bearings in the wheels or do whatever else is necessary if you can prove that the frictional torque in the axle of the wheels is worse than -0.02 N . m. At first, you are discouraged by the technical sound of what you have been told and by the absence of any tool to measure torque in your garage. But then you remember that you are taking a physics class! You take your bike into the garage, turn it upside down and start spinning the wheel while you think about how to determine the frictional torque. The driveway outside the garage had a small puddle, so you notice that droplets of water are flying off the edge of one point on the tire tangentially, including drops that…
2nd drop down is "up" or "down"
Romeo (79.0 kg) entertains Juliet (57.0 kg) by playing his guitar from the rear of their boat at rest in still water, 2.70 m away from Juliet, who is in the front of the boat. After the serenade, Juliet carefully moves to the rear of the boat (away from shore) to plant a kiss on Romeo's cheek. (a) How far (in m) does the 81.0 kg boat move toward the shore it is facing? m (b) What If? If the lovers both walk toward each other and meet at the center of the boat, how far (in m) and in what direction does the boat now move? magnitude m direction ---Select---

Chapter 21 Solutions

EBK WEBASSIGN FOR KATZ'S PHYSICS FOR SC

Ch. 21 - Prob. 2PQCh. 21 - You extend an impromptu invitation to a friend for...Ch. 21 - Prob. 4PQCh. 21 - Prob. 5PQCh. 21 - Prob. 6PQCh. 21 - Prob. 7PQCh. 21 - Prob. 8PQCh. 21 - Prob. 9PQCh. 21 - Prob. 10PQCh. 21 - Prob. 11PQCh. 21 - Prob. 12PQCh. 21 - Prob. 13PQCh. 21 - Prob. 14PQCh. 21 - Prob. 15PQCh. 21 - Prob. 16PQCh. 21 - Prob. 17PQCh. 21 - Prob. 18PQCh. 21 - Prob. 19PQCh. 21 - From Table 21.1, the specific heat of milk is 3.93...Ch. 21 - Prob. 21PQCh. 21 - Prob. 22PQCh. 21 - An ideal gas is confined to a cylindrical...Ch. 21 - Prob. 24PQCh. 21 - You place frozen soup (T = 17C) in a microwave...Ch. 21 - A 25-g ice cube at 0.0C is heated. After it first...Ch. 21 - Prob. 27PQCh. 21 - Prob. 28PQCh. 21 - Prob. 29PQCh. 21 - Prob. 30PQCh. 21 - Consider the latent heat of fusion and the latent...Ch. 21 - Prob. 32PQCh. 21 - Prob. 33PQCh. 21 - A thermodynamic cycle is shown in Figure P21.34...Ch. 21 - Prob. 35PQCh. 21 - Figure P21.36 shows a cyclic thermodynamic process...Ch. 21 - Figure P21.37 shows a PV diagram for a gas that is...Ch. 21 - Prob. 38PQCh. 21 - Prob. 39PQCh. 21 - Prob. 40PQCh. 21 - Prob. 41PQCh. 21 - Prob. 42PQCh. 21 - Prob. 43PQCh. 21 - Prob. 44PQCh. 21 - Figure P21.45 shows a cyclic process ABCDA for...Ch. 21 - Prob. 46PQCh. 21 - Prob. 47PQCh. 21 - Prob. 48PQCh. 21 - Prob. 49PQCh. 21 - Prob. 50PQCh. 21 - Prob. 51PQCh. 21 - Prob. 52PQCh. 21 - Prob. 53PQCh. 21 - Prob. 54PQCh. 21 - Prob. 55PQCh. 21 - You extend an impromptu invitation to a friend for...Ch. 21 - Prob. 57PQCh. 21 - Prob. 58PQCh. 21 - A lake is covered with ice that is 2.0 cm thick....Ch. 21 - A concerned mother is dressing her child for play...Ch. 21 - Prob. 61PQCh. 21 - Prob. 62PQCh. 21 - Prob. 63PQCh. 21 - Prob. 64PQCh. 21 - Prob. 65PQCh. 21 - Prob. 66PQCh. 21 - Prob. 67PQCh. 21 - Prob. 68PQCh. 21 - Three 100.0-g ice cubes initially at 0C are added...Ch. 21 - Prob. 70PQCh. 21 - Prob. 71PQCh. 21 - Prob. 72PQCh. 21 - Prob. 73PQCh. 21 - Prob. 74PQCh. 21 - Prob. 75PQCh. 21 - Prob. 76PQCh. 21 - Prob. 77PQCh. 21 - Prob. 78PQCh. 21 - How much faster does a cup of tea cool by 1C when...Ch. 21 - The PV diagram in Figure P21.80 shows a set of...Ch. 21 - Prob. 81PQCh. 21 - Prob. 82PQCh. 21 - Prob. 83PQCh. 21 - Prob. 84PQCh. 21 - Prob. 85PQ
Knowledge Booster
Background pattern image
Physics
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Physics for Scientists and Engineers: Foundations...
Physics
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Cengage Learning
Text book image
Principles of Physics: A Calculus-Based Text
Physics
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Text book image
College Physics
Physics
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:OpenStax College
Text book image
An Introduction to Physical Science
Physics
ISBN:9781305079137
Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Publisher:Cengage Learning
Text book image
University Physics Volume 2
Physics
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Text book image
Physics for Scientists and Engineers, Technology ...
Physics
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning