
Concept explainers
(a)
The magnitude and direction of magnetic field at point
(a)

Answer to Problem 7P
The magnitude of magnetic field at point
Explanation of Solution
Given Info: The current flowing through the conductor is
Diagram of three parallel conductor having current of magnitude
Figure (1)
Formula to calculate side of the square is,
Formula to calculate angle
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Write the expression to calculate magnetic field at point
Here,
Substitute
substitute
Write the expression to calculate y-component of magnetic field at
Substitute
Formula to calculate net magnetic field at point
Substitute
Hence, magnetic field at point
Conclusion:
Therefore magnetic field at point
(b)
magnitude and direction of magnetic field at point
(b)

Answer to Problem 7P
magnitude of magnetic field at point
Explanation of Solution
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Write the expression to calculate magnetic field at point
Here,
Substitute
substitute
Write the expression to calculate y-component of magnetic field at
Substitute
Formula to calculate net magnetic field at point
Substitute
Hence, magnetic field at point
Conclusion:
Therefore magnetic field at point
(c)
magnitude and direction of magnetic field at point
(c)

Answer to Problem 7P
magnitude of magnetic field at point
Explanation of Solution
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Formula to calculate magnetic field at point
Here
Substitute
Write the expression to calculate magnetic field at point
Here,
Substitute
Write the expression to calculate y-component of magnetic field at
Substitute
Formula to calculate net magnetic field at point
Substitute
Hence, magnetic field at point
Conclusion:
Therefore magnetic field at point
Want to see more full solutions like this?
Chapter 29 Solutions
Physics for Scientists and Engineers with Modern Physics
- Can someone help mearrow_forward3. Four identical small masses are connected in a flat perfect square. Rank the relative rotational inertias (IA, IB, IC) about the three axes of rotation shown. Axes A and B are in the plane of the square, and axis C is perpendicular to the plane, through mass m1. ΙΑ IB m2 m1 m3 Ic m4 (a) IAarrow_forwardConsider the circuit shown in the figure below. (Assume L = 5.20 m and R2 = 440 Ω.) (a) When the switch is in position a, for what value of R1 will the circuit have a time constant of 15.4 µs? (b) What is the current in the inductor at the instant the switch is thrown to position b?arrow_forwardCan someone helparrow_forwardCan someone help mearrow_forwardA particle in a box between x=0 and x=6 has the wavefunction Psi(x)=A sin(2πx). How muchenergy is required for the electron to make a transition to Psi(x)= A’ sin(7π x/3). Draw anapproximate graph for the wavefunction. Find A and A'arrow_forwardA proton is moving with 10^8 m/s speed. Find the De Broglie wavelength associated with theproton and the frequency of that wave.arrow_forwardFind the wavelength of the photon if a (Li--) electron makes a transition from n=4 to n=3. Findthe Bohr radius for each state.arrow_forwardA photon with wavelength 3000 nm hits a stationary electron. After the collision electron isscattered to 60 degrees. Find the wavelength and frequency of the scattered photon.arrow_forwardA metal has threshold frequency 10^15. Calculate the maximum kinetic energy of the ejectedelectron if a laser beam with wavelength 1.5 10^-7 m is projected on the metal.arrow_forwardDetermine the direction of the vector V, B, or ♬ that is missing from the pair of vectors shown in each scenario. Here, u is the velocity vector of a moving positive charge, B is a constant and uniform magnetic field, and F is the resulting force on the moving charge. 1. 2. 3. B OB F 4. ↑F F 5. 怔 ↑ ↑F Answer Bank 6. ↑ TE Farrow_forwardTwo point charges (+9.80 nC and -9.80 nC) are located 8.00 cm apart. Let U=0 when all of the charges are separated by infinite distances. What is the potential energy if a third point charge q=-4.20 nC is placed at point b? 8.00 cm 8.00 cm 4.00 +4.00 +4.00- cm cm cm HJarrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
- Physics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningCollege PhysicsPhysicsISBN:9781285737027Author:Raymond A. Serway, Chris VuillePublisher:Cengage Learning





