Physics for Scientists and Engineers with Modern Physics, Technology Update
9th Edition
ISBN: 9781305401969
Author: SERWAY, Raymond A.; Jewett, John W.
Publisher: Cengage Learning
expand_more
expand_more
format_list_bulleted
Question
Chapter 34, Problem 1P
(a)
To determine
The direction of the magnetic field at point
(b)
To determine
The magnitude of the magnetic field at point
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
A rocket zooms past the earth at v= 2.0 x 10 m/s. Scientists on
the rocket have created the electric and magnetic fields shown in the
figure.(Figure 1) Assume that B = 0.60 T and E= 6.0x105 V/m.
Figure
B
E
2.0 x 10 m/s
1 of 1
What is the electric field strength measured by an earthbound scientist?
Express your answer using two significant figures.
5 ΑΣΦ
E =
Submit
Part B
X Incorrect; Try Again; One attempt remaining
Check your signs.
O Up
-6.105
What is the direction of the electric field measured by an earthbound scientis
Down
Submit
Part C
O Left
O Right
O
Into the page
O Out of the page
Previous Answers Request Answer
B = 0.60 T
Submit
?
Request Answer
What is the magnetic field strength measured by an earthbound scientist?
Express your answer using two significant figures.
Correct
Previous Answers
V/m
A (7.4020x10^-1)-m radius cylindrical region contains a uniform electric field that is
parallel to the axis and is increasing at the rate (3.24x10^12) V/mxs. What is the
magnitude of the magnetic field at a point (2.0320x10^-1) m from the axis? Express
your result with three significant figures.
An electric field is restricted to a circular area of diameter d = 11.0 cm as shown in the figure. At the instant shown, the field direction is out of the page, its magnitude is 300 V/m, and its magnitude is increasing at a rate of 22.0 V/(m · s).
What is the direction (upwards or downwards) of the magnetic field at the point P, r= 3 cm from the center of the circle?
What is the magnitude of the magnetic field (in T) at the point P, r= 3 cm from the center of the circle?
What If?As before, at the moment shown in the figure, the electric field within the circle has a magnitude of 300 V/m and is increasing at a rate of 0 V/(m · s). In addition, suppose that the radius of the circular area of the electric field increases at a rate of 1.00 cm/s. What would the magnitude of the magnetic field be at point P at this moment (in T)?
Chapter 34 Solutions
Physics for Scientists and Engineers with Modern Physics, Technology Update
Ch. 34.1 - Prob. 34.1QQCh. 34.3 - What is the phase difference between the...Ch. 34.3 - Prob. 34.3QQCh. 34.5 - Prob. 34.4QQCh. 34.6 - Prob. 34.5QQCh. 34.7 - Prob. 34.6QQCh. 34.7 - Prob. 34.7QQCh. 34 - Prob. 1OQCh. 34 - Prob. 2OQCh. 34 - Prob. 3OQ
Ch. 34 - Prob. 4OQCh. 34 - Prob. 5OQCh. 34 - Prob. 6OQCh. 34 - Prob. 7OQCh. 34 - Prob. 8OQCh. 34 - Prob. 9OQCh. 34 - Prob. 10OQCh. 34 - Prob. 11OQCh. 34 - Prob. 1CQCh. 34 - Prob. 2CQCh. 34 - Prob. 3CQCh. 34 - Prob. 4CQCh. 34 - Prob. 5CQCh. 34 - Prob. 6CQCh. 34 - Prob. 7CQCh. 34 - Do Maxwells equations allow for the existence of...Ch. 34 - Prob. 9CQCh. 34 - Prob. 10CQCh. 34 - Prob. 11CQCh. 34 - Prob. 12CQCh. 34 - Prob. 13CQCh. 34 - Prob. 1PCh. 34 - Prob. 2PCh. 34 - Prob. 3PCh. 34 - Prob. 4PCh. 34 - Prob. 5PCh. 34 - Prob. 6PCh. 34 - Prob. 7PCh. 34 - Prob. 8PCh. 34 - The distance to the North Star, Polaris, is...Ch. 34 - Prob. 10PCh. 34 - Prob. 11PCh. 34 - Prob. 12PCh. 34 - Prob. 13PCh. 34 - Prob. 14PCh. 34 - Prob. 15PCh. 34 - Prob. 16PCh. 34 - Prob. 17PCh. 34 - Prob. 18PCh. 34 - Prob. 19PCh. 34 - Prob. 20PCh. 34 - If the intensity of sunlight at the Earths surface...Ch. 34 - Prob. 22PCh. 34 - Prob. 23PCh. 34 - Prob. 24PCh. 34 - Prob. 25PCh. 34 - Review. Model the electromagnetic wave in a...Ch. 34 - Prob. 27PCh. 34 - Prob. 28PCh. 34 - Prob. 29PCh. 34 - Prob. 30PCh. 34 - Prob. 31PCh. 34 - Prob. 32PCh. 34 - Prob. 33PCh. 34 - Prob. 34PCh. 34 - Prob. 35PCh. 34 - Prob. 36PCh. 34 - Prob. 37PCh. 34 - Prob. 38PCh. 34 - Prob. 39PCh. 34 - The intensity of sunlight at the Earths distance...Ch. 34 - Prob. 41PCh. 34 - Prob. 42PCh. 34 - Prob. 43PCh. 34 - Extremely low-frequency (ELF) waves that can...Ch. 34 - Prob. 45PCh. 34 - A large, flat sheet carries a uniformly...Ch. 34 - Prob. 47PCh. 34 - Prob. 48PCh. 34 - Prob. 49PCh. 34 - Prob. 50PCh. 34 - Prob. 51PCh. 34 - Prob. 52PCh. 34 - Prob. 53PCh. 34 - Prob. 54APCh. 34 - Prob. 55APCh. 34 - Prob. 56APCh. 34 - Prob. 57APCh. 34 - Prob. 58APCh. 34 - One goal of the Russian space program is to...Ch. 34 - Prob. 60APCh. 34 - Prob. 61APCh. 34 - Prob. 62APCh. 34 - Prob. 63APCh. 34 - Prob. 64APCh. 34 - Prob. 65APCh. 34 - Prob. 66APCh. 34 - Prob. 67APCh. 34 - Prob. 68APCh. 34 - Prob. 69APCh. 34 - Prob. 70APCh. 34 - Prob. 71APCh. 34 - Prob. 72APCh. 34 - Prob. 73APCh. 34 - Prob. 74APCh. 34 - Prob. 75APCh. 34 - Prob. 76CPCh. 34 - Prob. 77CPCh. 34 - Prob. 78CPCh. 34 - Prob. 79CP
Knowledge Booster
Similar questions
- Consider the situation shown in the figure. An electric field of 277 V/m is confined to a circular area d = 10 cm in diameter and directed outward perpendicular to the plane of the figure. If the field is increasing at a rate of 16.9 V/m·s, what is the magnitude of the magnetic field at the point P, r = 13.2 cm from the center of the circle?arrow_forwardA circular region 4.00 m in radius is filled with an electric field perpendicular to the face of the circle. The magnitude of the field in the circle varies with radius and time as E(r, t) = Arcos (@t) where A = 1000. V/m² and w = 3.00 x 10⁹ s¨¹. What is the maximum value of the magnetic field at the edge of the region? i Tarrow_forwardYou have a parallel plate capacitor made of circular disks which have a radius of 2.00 cm. During a particular interval while the capacitor is charging, the electric field between the plates increases by 760 V/m, and a tiny magnetic field of 6.3 x 10-15 T exists at a point 3.00 cm from the center axis of the capacitor. How much time elapses during this interval? i E S + Barrow_forward
- A current of (1.124x10^0) A is used to charge a parallel plate capacitor with square plates. The side of each plate is (6.0160x10^1) cm. What is the displacement current through a (4.31x10^-3) m² area wholly between the capacitor plates and parallel to them? Answer with three significant figures in mA.arrow_forwardA time-varying electric field is produced inside a cylinder of R = 5.0 cm, given by the expression: E(t)= (1.67x109 t2) v/ms2 . The electric field outside the cylinder is always zero. If the electric field is directed in the direction presented in Figure: 1. Calculate the magnitude of the magnetic field in the region ? ≤ ? for ? = 2.00 mm and ? = 3.5 sarrow_forwardA planar electromagnetic wave is propagating in the -x direction. At a certain point P and at a given instant, the electric field of the wave is given by E = (1.27 V/m) ĵ. What is the magnitude and direction of the magnetic field vector of the wave (in nT) at the point P at that instant? Denote the +z direction as positive, and the -z direction as negative. (Use c = 2.9979 × 108 m/s) nTarrow_forward
- Positively charged ions enter perpendicularly crossed fields at an electric field strength of E₁ = 250 V/m and a magnetic flux density of B₁ = 10-³ T at the position Po. One part of the ions straightly traverses the setup and passes an aperture P₁ into a magnetic field at a flux density B₂ = 1 T. The ions are deflected there and impinge on a screen at P₂ (P₁ P₂ = 10 cm). 3 a) Calculate the velocity of the ions, which straightly traverse the crossed fields and exit at P₁. b) Calculate the specific charge q/m of the ions, which impinge on the screen at P2. Pl P X E₁ X ||₁ X X X B₁ XX X X ||| X B₂ X X X X XXarrow_forwardAn electric field is restricted to a circular area of diameter d = 10.9 cm as shown in the figure. At the instant shown, the field direction is out of the page, its magnitude is 300 V/m, and its magnitude is increasing at a rate of 18.0 V/(m · s). A)What is the direction of the magnetic field at the point P, r = 16.6 cm from the center of the circle? B)What is the magnitude of the magnetic field (in T) at the point P, r = 16.6 cm from the center of the circle? C) As before, at the moment shown in the figure, the electric field within the circle has a magnitude of 300 V/m and is increasing at a rate of 18.0 V/(m · s). In addition, suppose that the radius of the circular area of the electric field increases at a rate of 1.00 cm/s. What would the magnitude of the magnetic field be at point P at this moment (in T)?arrow_forwardAn electric field with initial magnitude 200 V/m directed into the page and increasing at a rate of 14.0 V/(ms) is confined to the area of radius R = 19.0 cm in the figure below. If r = 39.0 cm, what are the magnitude and direction of the magnetic field at point A? magnitude direction to the right Ein 8 T A 100 & @ Rarrow_forward
- An electromagnetic plane wave, that is propagating in the x-direction at a speed of 3.00 x108 m/s, has a peak electric field strength of 4,200 N/C and a wavelength of 900 nm. Which of the following functions represents the correct behavior for the magnetic field? a. B(x, t) = (21 µT)sin[(9.00 x 10-7 m-1)x – (2.09 x 1015 rad/s)t] b. B(x, t) = (28 µT)sin[(6.98 x 106 m-1)x – (2.09 x 1015 rad/s)t] c. B(x, t) = (14 µT)sin[(6.98 x 106 m-1)x – (2.09 x 1015 rad/s)t] d. B(x, t) = (14 µT)sin[(6.98 x 106 m-1)x – (3.14 x 1015 rad/s)t] e. B(x, t) = (4,200 µT)sin[(6.98 x 106 m-1)x – (2.09 x 1015 rad/s)t]arrow_forwardA (1.215x10^0)-m radius cylindrical region contains a uniform electric field along the cylinder axis. It is increasing uniformly with time. What is the rate of change (magnitude) of the electric field required to obtain a total displacement current of (4.64x10^0) nA through a cross section of the region? Provide your answer in V/(m.s) with three significant figures.arrow_forwardA sample of helium gas is excited with an electric current, which causes the helium to emit electromagnetic radiation when the helium atoms return to their ground state. You measure the maximum magnitude of the electric field of the emitted radiation to be 0.0074 V/m. Based on your measurement, what is the maximum magnitude of the magnetic field in the radiation?arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- Principles of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers, Technology ...PhysicsISBN:9781305116399Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning
Principles of Physics: A Calculus-Based Text
Physics
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Physics for Scientists and Engineers, Technology ...
Physics
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning
Physics for Scientists and Engineers: Foundations...
Physics
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Cengage Learning