Question

A charged particle moves in a straight line with constant speed through a region of space....

A charged particle moves in a straight line with constant speed through a region of space. Which of the following electric and magnetic field configurations are consistent with this trajectory? (Assume gravity is negligible).

a) the magnetic field is perpendicular to the particle's velocity and the electric field is zero.

b) the magnetic field is perpendicular to the particle's velocity and there is a non-zero electric field.

c) the magnetic field is parallel to the particle's velocity and the electric field is zero.

d) choice a and b are both possible.

e) choice b and c are both possible.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

b) the magnetic field is perpendicular to the particle's velocity and there is a non-zero electric field.

if force due to magnetic field is balanced by force due to electric field then charged particle moves in a straight line with constant speed through a region of space.

c) the magnetic field is parallel to the particle's velocity and the electric field is zero.

if magnetic field is parallel to velocity force will be zero then charged particle moves in a straight line with constant speed through a region of space.

e) choice b and c are both possible.

Add a comment
Know the answer?
Add Answer to:
A charged particle moves in a straight line with constant speed through a region of space....
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A charged particle moves in a straight line through a particular region of space. Could there...

    A charged particle moves in a straight line through a particular region of space. Could there be a non zero magnetic field in this region? a. yes b. no Explain

  • A charged particle moves through a velocity selector at a constant speed in a straight line....

    A charged particle moves through a velocity selector at a constant speed in a straight line. The electric field of the velocity selector is 3.20×10^3 N/C, while the magnetic field is 0.250 T. When the electric field is turned off, the charged particle travels on a circular path whose radius is 4.60 cm. Find the charge-to-mass ratio of the particle.

  • A charged particle moves through a region of space that has both a uniform electric field...

    A charged particle moves through a region of space that has both a uniform electric field and a uniform magnetic field. What is the condition for these fields in order for the particle to move through this region at a constant velocity? Does the answer depend on the sign of the particle’s electric charge?

  • 1) A charged particle is fired into a cubical region of space where there is a...

    1) A charged particle is fired into a cubical region of space where there is a uniform magnetic field. Outside this region, there is no magnetic field. Is it possible that particle will remain inside the cubical region? Why or why not? 2) A charged particle moves through a region of space with constant velocity (magnitude and direction). If the external magnetic field is zero in this region, can you conclude that the external field in the region is also...

  • Answer should be V = (E)/ (B) 6 Suppose a charged particle is moving through a...

    Answer should be V = (E)/ (B) 6 Suppose a charged particle is moving through a region of space in which there is an electric field perpendicular to its velocity vector, and also a magnetic field perpendicular to both the particle's velocity vector and the electric field. Show that there will be one particular velocity at which the particle can be moving that results in a total force of zero on it; this requires that you analyze both the magnitudes...

  • a) A charged particle moves through a velocity selector at a constant speed in a straight...

    a) A charged particle moves through a velocity selector at a constant speed in a straight line. The electric field of the velocity selector is 4070 N/C, while the magnetic field is 0.344 T. When the electric field is turned off, the charged particle travels on a circular path whose radius is 6.06 cm. Find the charge-to-mass ratio of the particle. b) The 1600-turn coil in a dc motor has an area per turn of 2.3 × 10-2 m2. The...

  • T If a charged particle moves in a necessarily zero? Explain. region of space, can you...

    T If a charged particle moves in a necessarily zero? Explain. region of space, can you say that the straight line through some magnetic field in that region is

  • A 6.60 −μC particle moves through a region of space where an electric field of magnitude...

    A 6.60 −μC particle moves through a region of space where an electric field of magnitude 1300 N/C points in the positive x direction, and a magnetic field of magnitude 1.24 T points in the positive z direction. If the net force acting on the particle is 6.25×10−3 N in the positive xx direction, find the components of the particle's velocity. Assume the particle's velocity is in the x-y plane. vx, vy, vz =

  • Problem 22.14 A6.70 - C particle moves through a region of space where an electric field...

    Problem 22.14 A6.70 - C particle moves through a region of space where an electric field of magnitude 1300 N/C points in the positive direction, and a magnetic field of magnitude 1.25 T points in the positive z direction. Part A If the net force acting on the particle is 6.25*10-3N in the positive e direction find the components of the particle's velocity. Assume the particle's velocity is in the 2-y plane Enter your answers numerically separated by commas.

  • Question 2 (7 points) A charged particle (m = 5.0 g and q = -70 uC)...

    Question 2 (7 points) A charged particle (m = 5.0 g and q = -70 uC) moves horizontally in a straight line with a constant speed of 30 km/s in a region where the free-fall gravitational acceleration is 9.8 m/s? downward, the electric field is 700 N/C upward, and the magnetic field is perpendicular to the velocity of the particle. What is the magnitude of the magnetic field in this region? zero 12 mT 23 mT 35 mT 47 mT

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT