Physics For Scientists And Engineers, Volume 2, Technology Update
Physics For Scientists And Engineers, Volume 2, Technology Update
9th Edition
ISBN: 9781305116412
Author: SERWAY, Raymond A.; Jewett, John W.
Publisher: Cengage Learning
bartleby

Videos

Textbook Question
Book Icon
Chapter 34, Problem 34.77CP

A linearly polarized microwave of wavelength 1.50 cm is directed along the positive x axis. The electric field vector has a maximum value of 175 V/m and vibrates in the xy plane. Assuming the magnetic field component of the wave can be written in the form B = Bmax sin (kxωt), give values for (a) Bmax, (b) k, and (c) ω.(d) Determine in which plane the magnetic field vector vibrates. (e) Calculate the average value of the Poynting vector for this wave. (f) If this wave were directed at normal incidence onto a perfectly reflecting sheet, what radiation pressure would it exert? (g) What acceleration would be imparted to a 500-g sheet (perfectly reflecting and at normal incidence) with dimensions of 1.00 m × 0.750 m?

(a)

Expert Solution
Check Mark
To determine

The maximum value of magnetic field.

Answer to Problem 34.77CP

The maximum value of magnetic field is 5.83nT .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the maximum value of magnetic field is,

Bmax=Emaxc

Here,

Emax is the maximum magnitude of electric field.

c is the speed of waves.

Substitute 175V/m for Emax and 3×108m/s for c in above equation.

Bmax=175V/m3×108m/s=5.833×107T583nT

Conclusion:

Therefore, the maximum value of magnetic field is 5.83nT .

(b)

Expert Solution
Check Mark
To determine

The value of propogation vector k .

Answer to Problem 34.77CP

The value of propogation vector k is 419m1 .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the propagation vector is,

k=2πλ

Here,

λ is the wavelength.

Substitute 1.50cm for λ and 3.14 for π in the above equation.

k=2×3.141.50cm=2×3.141.50×102m=418.666m1419m1

Conclusion:

Therefore, the value of propogation vector k is 419m1 .

(c)

Expert Solution
Check Mark
To determine

The value of angular frequency ω .

Answer to Problem 34.77CP

The value of angular frequency ω is 1.26×1011s1 .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the angular frequency is,

ω=2πf=2πcλ

Here,

f is the frequency.

c is the speed of wave.

λ is the wavelength.

Substitute 1.50cm for λ , 3×108m/s for c and 3.14 for π in the above equation.

ω=2×3.14×3×108m/s1.50cm=2×3.14×3×108m/s1.50×102m=1.26×1011s1

Conclusion:

Therefore, the value of angular frequency ω is 1.26×1011s1 .

(d)

Expert Solution
Check Mark
To determine

The plane in which the magnetic field vector vibrates.

Answer to Problem 34.77CP

The plane in which the magnetic field vector vibrates is xz plane.

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

The electromagnetic waves comprises of sinusoidally varying magnetic and electric fields which travel with a speed of light in vacuum. Both electric and magnetic field vectors oscillate perpendicular to each other as well as perpendicular to the direction of propagation of waves.

The wave is propagating along the positive x diction and electric field vector is oscillating in xy plane, so the magnetic field vector will oscillate perpendicular to both in xz plane.

Conclusion:

Therefore, the plane in which the magnetic field vector vibrates is xz plane.

(e)

Expert Solution
Check Mark
To determine

The average value of Poynting vector for the microwave.

Answer to Problem 34.77CP

The average value of Poynting vector for the microwave is 40.6i^W/m2 .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the magnitude of average value of poynting vector for the microwave is,

S=EmaxBmax2μo

Here,

Emax is the maximum value of electric field.

Bmax is the maximum value of magnetic field.

Substitute 5.833×107T for Bmax , 4π×107N/A2 for μo and 175V/m for Emax in the above equation.

S=(175V/m)×(5.833×107T)2×4π×107N/A2=40.6W/m2

The vector notation of Poynting vector is,

S=40.6i^W/m2

Conclusion:

Therefore, the average value of Poynting vector for the microwave is 40.6i^W/m2 .

(f)

Expert Solution
Check Mark
To determine

The radiation pressure exerted on the perfectly reflecting sheet.

Answer to Problem 34.77CP

The radiation pressure exerted on the perfectly reflecting sheet is 271nPa .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the radiation pressure on a perfectly reflecting sheet is,

P=2Ic

Here,

I is the radiation intensity.

c is the speed of wave.

Substitute 40.6W/m2 for I and 3×108m/s for c in the above equation.

P=2×40.6W/m23×108m/s=2.71×107Pa=271nPa

Conclusion:

Therefore, the radiation pressure exerted on the perfectly reflecting sheet is 271nPa .

(g)

Expert Solution
Check Mark
To determine

The acceleration imparted to a 500g sheet.

Answer to Problem 34.77CP

The acceleration imparted to a 500g sheet is 4.07×106i^m/s2 .

Explanation of Solution

Given Info: The wavelength of polarized microwave directed along positive x -axis is 1.50cm . The maximum value of electric field vibrating in xy plane is 175V/m . Mass of sheet is 50g and dimensions of sheet are 1.00m×0.750m .

The magnetic field component of wave is,

B=Bmaxsin(kxωt)

Here,

k is the propogation vector.

ω is the angular frequency.

Formula to calculate the area of sheet is,

A=L×B

Here,

L is the length of sheet.

B is the width of sheet.

Substitute 1.00m for L and 0.750m for B in the above equation.

A=1.00m×0.750m=0.750m2

Formula to calculate the acceleration imparted to sheet is,

a=Fm=PAm

Here,

F is the force exerted on sheet.

P is the radiation pressure.

A is the area of sheet.

m is the mass of sheet.

Substitute 2.7×107Pa for P , 0.750m2 for A and 50g for m in the above equation.

a=(2.7×107Pa)×(0.750m2)(50g)=(2.7×107Pa)×(0.750m2)(50×103kg)=4.07×106m/s2

The vector notation of acceleration is,

a=4.07×106i^m/s2

Conclusion:

Therefore, the acceleration imparted to a 500g sheet is 4.07×106i^m/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!
Students have asked these similar questions
A sinusoidal electromagnetic wave is propagating in vacuum in the +z-direction. If at a particular instant and at a certain point in space the electric field is in the +x-direction and has magnitude 4.00 V/m, what are the magnitude and direction of the magnetic field of the wave at this same point in space and instant in time?
A sinusoidal electromagnetic wave is propagating in vacuum in the +z-direction. If at a particular instant and at a certainpoint in space the electric field is in the +x-direction and has magnitude 4.00V/m, what are the magnitude and direction of the magnetic field of the wave at this same point in space and instant in time?
If the magnetic field of a light wave oscillates parallel to a y axis and is given by By = Bm sin(kz- vt), (a) in what direction does the wave travel and (b) parallel to which axis does the associated electric field oscillate?

Chapter 34 Solutions

Physics For Scientists And Engineers, Volume 2, Technology Update

Ch. 34 - Prob. 34.4OQCh. 34 - Prob. 34.5OQCh. 34 - Which of the following statements are true...Ch. 34 - Prob. 34.7OQCh. 34 - Prob. 34.8OQCh. 34 - An electromagnetic wave with a peak magnetic field...Ch. 34 - Prob. 34.10OQCh. 34 - Prob. 34.11OQCh. 34 - suppose a creature from another planet has eyes...Ch. 34 - Prob. 34.2CQCh. 34 - Prob. 34.3CQCh. 34 - List at least three differences between sound...Ch. 34 - If a high-frequency current exists in a solenoid...Ch. 34 - Prob. 34.6CQCh. 34 - Prob. 34.7CQCh. 34 - Do Maxwells equations allow for the existence of...Ch. 34 - Prob. 34.9CQCh. 34 - What does a radio wave do to the charges in the...Ch. 34 - Prob. 34.11CQCh. 34 - An empty plastic or glass dish being removed from...Ch. 34 - Prob. 34.13CQCh. 34 - Prob. 34.1PCh. 34 - Prob. 34.2PCh. 34 - Prob. 34.3PCh. 34 - An election moves through a uniform electric field...Ch. 34 - A proton moves through a region containing a...Ch. 34 - Prob. 34.6PCh. 34 - Suppose you are located 180 in from a radio...Ch. 34 - A diathermy machine, used in physiotherapy,...Ch. 34 - The distance to the North Star, Polaris, is...Ch. 34 - Prob. 34.10PCh. 34 - Review. A standing-wave pattern is set up by radio...Ch. 34 - Prob. 34.12PCh. 34 - The speed of an electromagnetic wave traveling in...Ch. 34 - A radar pulse returns to the transmitterreceiver...Ch. 34 - Figure P34.15 shows a plane electromagnetic...Ch. 34 - Verify by substitution that the following...Ch. 34 - Review. A microwave oven is powered by a...Ch. 34 - Why is the following situation impossible? An...Ch. 34 - ln SI units, the electric field in an...Ch. 34 - At what distance from the Sun is the intensity of...Ch. 34 - If the intensity of sunlight at the Earths surface...Ch. 34 - Prob. 34.22PCh. 34 - A community plans to build a facility to convert...Ch. 34 - Prob. 34.24PCh. 34 - Prob. 34.25PCh. 34 - Review. Model the electromagnetic wave in a...Ch. 34 - High-power lasers in factories are used to cut...Ch. 34 - Consider a bright star in our night sky. Assume...Ch. 34 - What is the average magnitude of the Poynting...Ch. 34 - Prob. 34.30PCh. 34 - Review. An AM radio station broadcasts...Ch. 34 - Prob. 34.32PCh. 34 - Prob. 34.33PCh. 34 - Prob. 34.34PCh. 34 - A 25.0-mW laser beam of diameter 2.00 mm is...Ch. 34 - A radio wave transmits 25.0 W/m2 of power per unit...Ch. 34 - Prob. 34.37PCh. 34 - Prob. 34.38PCh. 34 - A uniform circular disk of mass m = 24.0 g and...Ch. 34 - The intensity of sunlight at the Earths distance...Ch. 34 - Prob. 34.41PCh. 34 - Assume the intensity of solar radiation incident...Ch. 34 - A possible means of space flight is to place a...Ch. 34 - Extremely low-frequency (ELF) waves that can...Ch. 34 - A Marconi antenna, used by most AM radio stations,...Ch. 34 - A large, flat sheet carries a uniformly...Ch. 34 - Prob. 34.47PCh. 34 - Prob. 34.48PCh. 34 - Two vertical radio-transmitting antennas are...Ch. 34 - Prob. 34.50PCh. 34 - What are the wavelengths of electromagnetic waves...Ch. 34 - An important news announcement is transmitted by...Ch. 34 - In addition to cable and satellite broadcasts,...Ch. 34 - Classify waves with frequencies of 2 Hz, 2 kHz, 2...Ch. 34 - Assume the intensity of solar radiation incident...Ch. 34 - In 1965, Arno Penzias and Robert Wilson discovered...Ch. 34 - The eye is most sensitive to light having a...Ch. 34 - Prob. 34.58APCh. 34 - One goal of the Russian space program is to...Ch. 34 - A microwave source produces pulses of 20.0GHz...Ch. 34 - The intensity of solar radiation at the top of the...Ch. 34 - Prob. 34.62APCh. 34 - Consider a small, spherical particle of radius r...Ch. 34 - Consider a small, spherical particle of radius r...Ch. 34 - A dish antenna having a diameter of 20.0 m...Ch. 34 - The Earth reflects approximately 38.0% of the...Ch. 34 - Review. A 1.00-m-diameter circular mirror focuses...Ch. 34 - Prob. 34.68APCh. 34 - Prob. 34.69APCh. 34 - You may wish to review Sections 16.4 and 16.8 on...Ch. 34 - Prob. 34.71APCh. 34 - Prob. 34.72APCh. 34 - Prob. 34.73APCh. 34 - Prob. 34.74APCh. 34 - Prob. 34.75APCh. 34 - Prob. 34.76CPCh. 34 - A linearly polarized microwave of wavelength 1.50...Ch. 34 - Prob. 34.78CPCh. 34 - Prob. 34.79CP
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
Recommended textbooks for you
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
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: Foundations...
Physics
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Cengage Learning
Text book image
University Physics Volume 2
Physics
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
What Are Electromagnetic Wave Properties? | Physics in Motion; Author: GPB Education;https://www.youtube.com/watch?v=ftyxZBxBexI;License: Standard YouTube License, CC-BY