Question

a charged particle with a component of velocity along the magnetic field line and a component...

a charged particle with a component of velocity along the magnetic field line and a component of velocity perpendicular to the magnetic field line will be:

a) transgress around the velocity

b) have an elliptical orbit around the magnetic field line

c) spiral around the magnetic field line

d) be repelled by the magnetic field line

Homework Answers

Know the answer?
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
Similar Questions
How does a steady magnetic field affect the velocity of moving charged particle when the velocity...
How does a steady magnetic field affect the velocity of moving charged particle when the velocity is perpendicular to the magnetic field?
When a charged particle enters a magnetic field traveling so that its velocity vector is perpendicular...
When a charged particle enters a magnetic field traveling so that its velocity vector is perpendicular to the magnetic field, B, then its path will be
A magnetic field exerts a force on a charged particle a) if the particle is at...
A magnetic field exerts a force on a charged particle a) if the particle is at rest b) if the particle moves along the direction of the magnetic field c) always. d) never. e) if the particle moves through the direction of the magnetic field
A magnetic field exerts a force on a charged particle. to. if the particle is at...
A magnetic field exerts a force on a charged particle. to. if the particle is at rest b.if the particle moves through the direction of the magnetic field c. never d. if the particle moves along the direction of the magnetic field e. always
1)A particle moving to the right in a uniform magnetic field directed upwards experiences a magnetic...
1)A particle moving to the right in a uniform magnetic field directed upwards experiences a magnetic force directed inwards. The particle is (A) positively charged. (B) negatively charged. (C) uncharged. (D) Either A or B. (E) Any of the above. 2) A charged particle moves in a uniform magnetic field which is perpendicular to the particle’s velocity. Which of the following statements is/are correct? (A) The particle moves in a circle. (B) The kinetic energy of the particle does not...
When a charged particle enters a region of uniform magnetic field that is directed perpendicularly to...
When a charged particle enters a region of uniform magnetic field that is directed perpendicularly to the particle's velocity, the charged particle... follows a curved trajectory of constant radius of curvature. continues in straight-line motion.   follows a curved trajectory that is in the shape of a parabola.
A charged particle is in continuous circular motion in a plane perpendicular to a magnetic field....
A charged particle is in continuous circular motion in a plane perpendicular to a magnetic field. Draw a sketch with the magnetic field pointing into the page, and the particle travelling counter-clockwise in the plane of the page. Given a radius of motion of 0.0231 m, a magnetic field strength of 0.00500 T, a mass of 8.84 x 10-26 kg on the particle, and a linear speed of 209 m/s, determine the magnitude and sign of the particle’s charge.
a. Explain with a neat diagram the Magnetic Force on a charged particle moving with a...
a. Explain with a neat diagram the Magnetic Force on a charged particle moving with a constant velocity due to a uniform magnetic field. b. Derive the cyclotron frequency of a moving charged particle in a uniform magnetic field.
What is the force from the magnetic field on a charged particle moving parallel to a...
What is the force from the magnetic field on a charged particle moving parallel to a magnetic field? What is the force on a stationary charged particle in a magnetic field?
Which of the following statements concerning the motion of a charged particle inside a uniform magnetic...
Which of the following statements concerning the motion of a charged particle inside a uniform magnetic field is correct? (Assume the direction of initial velocity is parallel to the B-feild) 1)the charge moves in a circular orbit 2)the magnitude of the velocity does not change with time 3)the larger the initial speed of the particle, the larger the radius of the orbit --2 only --2 & 3 --1 & 2 --1 & 3 -- all are true
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT