Physics for Scientists and Engineers: Foundations and Connections
Physics for Scientists and Engineers: Foundations and Connections
15th Edition
ISBN: 9781305289963
Author: Debora M. Katz
Publisher: Cengage Custom Learning
bartleby

Videos

Question
Book Icon
Chapter 34, Problem 83PQ

(a)

To determine

The value of Emax.

(a)

Expert Solution
Check Mark

Answer to Problem 83PQ

The value of Emax is 2.61×103V/m.

Explanation of Solution

Write the expression for the amplitude of electric field.

    Emax=cBmax                                                                                                      (I)

Here, Emax is the amplitude of electric field, c is the speed of light and Bmax is the amplitude of magnetic field.

Conclusion:

Substitute 8.70μT for Bmax and 3.0×108m/s for c in the above equation to find Emax.

    Emax=(3.0×108m/s)(8.70μT×109T1μT)=2.61×103V/m

Thus, the value of Emax is 2.61×103V/m.

(b)

To determine

The wave number of the wave.

(b)

Expert Solution
Check Mark

Answer to Problem 83PQ

The wave number of the wave is 1.08×103m1.

Explanation of Solution

Write the expression for the wave number of the wave.

    k=2πλ                                                                                                                  (II)

Here, k is the wave number and λ is the wavelength of the wave.

Conclusion:

Substitute 5.8mm for λ in equation (II) to find k.

    k=2π((5.8mm)(109m1mm))=1.08×103rad/m

Therefore, the wave number of the wave is 1.08×103m1.

(c)

To determine

The angular frequency of the wave.

(c)

Expert Solution
Check Mark

Answer to Problem 83PQ

The angular frequency of the wave is 3.25×1011rad/s.

Explanation of Solution

Write the expression for the angular frequency of the wave.

    ω=2πcλ                                                                                                    (III)

Here, ω is the angular frequency, c is the speed of light, f is the frequency of light and λ is the wavelength.

Conclusion:

Substitute 3×108m/s for c and 5.8mm for λ in equation (III) to find ω.

    ω=2π(3×108m/s)((5.8mm)(103m1mm))=3.25×1011rad/s

Thus, the angular frequency of the wave is 3.25×1011rad/s.

(d)

To determine

The plane in which electric field oscillates.

(d)

Expert Solution
Check Mark

Answer to Problem 83PQ

The electric field oscillates in the x-y-plane.

Explanation of Solution

Since, the electric field is directed in the z-direction, the plane of oscillation of the electric field is the x-y-plane.

(e)

To determine

The average value of the Poynting vector.

(e)

Expert Solution
Check Mark

Answer to Problem 83PQ

The average value of Poynting vector is 9.03×103iW/m2

Explanation of Solution

Write the expression for the average value of Poynting vector.

    Savg.=EmaxBmax2μ0                                                                                            (IV)

Here, μ0 is the permeability of free space, Emax is the amplitude of electric field and Bmax is the amplitude of magnetic field.

Conclusion:

Substitute 4π×103H/m for μ0, 8.70μT for Bmax and 2.61×103V/m for Bmax in equation (IV) to find Savg..

    Savg.=(2.61×103V/m)(8.70×106T)2(4π×107H/m)=9.03×103W/m2

Thus, the average value of Poynting vector is 9.03×103iW/m2.

(f)

To determine

The pressure exerted by the wave on a lightweight solar sail.

(f)

Expert Solution
Check Mark

Answer to Problem 83PQ

The pressure exerted by the wave on the solar sail is 6.02×105Pa.

Explanation of Solution

Write the expression for the pressure exerted by the wave on lightweight solar sail.

    P=2Ic                                                                                                                    (V)

Here, P is the pressure, I is the intensity, and c is the speed of light.

Conclusion:

Substitute 9.03×103W/m2 for I and 3.0×108m/s for c. in equation (V) to find P.

    P=(2)(9.03×103W/m2)3.0×108m/s=6.02×105Pa

Thus, the pressure exerted by the wave on the solar sail is 6.02×105Pa.

(g)

To determine

The acceleration of the solar sail.

(g)

Expert Solution
Check Mark

Answer to Problem 83PQ

The acceleration of the solar sail is 6.98×102m/s2.

Explanation of Solution

Write the expression for the acceleration of the solar sail.

    a=IAmc                                                  (VI)

Here, a is the acceleration of the sail, I is the intensity, A is the area of the sail, m is the mass of the sail, c is the speed of light.

Write the expression for the area of the sail.

    A=(5.00m×8.00m)=40m2

Conclusion:

Substitute 9.03×103W/m2 for I, 40m2 for A, 3.0×108m/s for c and 34.5g for m in equation (VI) to find a.

    a=(2)(9.03×103W/m2)(40m2)(34.5g×103kg1g)(3.0×108m/s)=6.98×102m/s2

Thus, the acceleration of the solar sail is 6.98×102m/s2

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!

Chapter 34 Solutions

Physics for Scientists and Engineers: Foundations and Connections

Ch. 34 - Prob. 4PQCh. 34 - A solenoid with n turns per unit length has radius...Ch. 34 - Prob. 6PQCh. 34 - Prob. 7PQCh. 34 - Prob. 8PQCh. 34 - Prob. 9PQCh. 34 - Prob. 10PQCh. 34 - Prob. 11PQCh. 34 - Prob. 12PQCh. 34 - Prob. 13PQCh. 34 - Prob. 14PQCh. 34 - Prob. 15PQCh. 34 - Prob. 16PQCh. 34 - Prob. 17PQCh. 34 - Prob. 18PQCh. 34 - Prob. 19PQCh. 34 - Prob. 20PQCh. 34 - Ultraviolet (UV) radiation is a part of the...Ch. 34 - Prob. 22PQCh. 34 - What is the frequency of the blue-violet light of...Ch. 34 - Prob. 24PQCh. 34 - Prob. 25PQCh. 34 - Prob. 26PQCh. 34 - WGVU-AM is a radio station that serves the Grand...Ch. 34 - Suppose the magnetic field of an electromagnetic...Ch. 34 - Prob. 29PQCh. 34 - Prob. 30PQCh. 34 - Prob. 31PQCh. 34 - Prob. 32PQCh. 34 - Prob. 33PQCh. 34 - Prob. 34PQCh. 34 - Prob. 35PQCh. 34 - Prob. 36PQCh. 34 - Prob. 37PQCh. 34 - Prob. 38PQCh. 34 - Prob. 39PQCh. 34 - Prob. 40PQCh. 34 - Prob. 41PQCh. 34 - Prob. 42PQCh. 34 - Prob. 43PQCh. 34 - Prob. 44PQCh. 34 - Prob. 45PQCh. 34 - Prob. 46PQCh. 34 - Prob. 47PQCh. 34 - Prob. 48PQCh. 34 - Prob. 49PQCh. 34 - Prob. 50PQCh. 34 - Prob. 51PQCh. 34 - Prob. 52PQCh. 34 - Optical tweezers use light from a laser to move...Ch. 34 - Prob. 54PQCh. 34 - Prob. 55PQCh. 34 - Prob. 57PQCh. 34 - Prob. 58PQCh. 34 - Prob. 59PQCh. 34 - Prob. 60PQCh. 34 - Some unpolarized light has an intensity of 1365...Ch. 34 - Prob. 62PQCh. 34 - Prob. 63PQCh. 34 - Prob. 64PQCh. 34 - Unpolarized light passes through three polarizing...Ch. 34 - The average EarthSun distance is 1.00 astronomical...Ch. 34 - Prob. 67PQCh. 34 - Prob. 68PQCh. 34 - Prob. 69PQCh. 34 - Prob. 70PQCh. 34 - Prob. 71PQCh. 34 - Prob. 72PQCh. 34 - Prob. 73PQCh. 34 - Prob. 74PQCh. 34 - CASE STUDY In Example 34.6 (page 1111), we...Ch. 34 - Prob. 76PQCh. 34 - Prob. 77PQCh. 34 - Prob. 78PQCh. 34 - Prob. 79PQCh. 34 - Prob. 80PQCh. 34 - Prob. 81PQCh. 34 - Prob. 82PQCh. 34 - Prob. 83PQCh. 34 - In Section 34-1, we summarized classical...
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
Physics for Scientists and Engineers, Technology ...
Physics
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
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
Physics
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Text book image
Physics for Scientists and Engineers with Modern ...
Physics
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
What Are Electromagnetic Wave Properties? | Physics in Motion; Author: GPB Education;https://www.youtube.com/watch?v=ftyxZBxBexI;License: Standard YouTube License, CC-BY