Question

A square loop of current-carrying wire with edge l
0 0
Add a comment Improve this question Transcribed image text
✔ Recommended Answer
Answer #1

Solution:

This is very basic question,

this loop is in the x-y direction and the center is in the origin. so net field working in the z direction (from the right hand thumb rule). if a charge particle will move in the z direction in the line of x=0, y=0 then from the formula F=qBvsin(\theta), theta will be zero, and force on the particle will be zero.

so answer is (D) x=0, y=0

Add a comment
Know the answer?
Add Answer to:
A square loop of current-carrying wire with edge length a is in the xy plane, the...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Similar Homework Help Questions
  • A circular loop of current-carrying wire with radius a is in the xy plane, the origin...

    A circular loop of current-carrying wire with radius a is in the xy plane, the origin being at its center. Along which of the following lines can a charge move without experiencing a magnetic force? x = 0, y = a/2 x = a/2, y = a/2 x = a/2, y = 0 x = 0, y = 0 x = 0, z = 0

  • Force between an Infinitely Long Wire and a Square Loop

    A square loop of wire with side length a carries a current I1. The center of the loop is located a distance d from an infinite wire carrying a current I2. The infinite wire and loop are in the same plane; two sides of the square loop are parallel to the wire and two are perpendicular as shown. (Figure 1)Part AWhat is the magnitude, F, of the net force on the loop?Express the force in terms of I1, I2, a,...

  • Q2. (12 p) The diagram shows a wire carrying current 11 and a loop carrying current...

    Q2. (12 p) The diagram shows a wire carrying current 11 and a loop carrying current 12. Side of the loop has length L. The distance between the wire and left edge of the loop is R1, and the distance between the wire and right edge of the loop is R2. a. What is the magnitude and direction of the magnetic field B produced by the wire at distancer, on the right side of the wire (in the region where...

  • 4. (a) A long straight wire carrying a current is placed near a current-carrying rectangular loop...

    4. (a) A long straight wire carrying a current is placed near a current-carrying rectangular loop. Describe how, and why, the loop would move as a result of the magnetic forces from the long wire. The current in the loop is counterclockwise. (b) Suppose that you were to put in a different loop below the long wire (and still in the plane of the page). Draw the shape of a loop that would... ...experience a total magnetic force of zero...

  • A 18.0 cmcm ×× 18.0 cmcm square loop of wire lies in the xy-plane with its...

    A 18.0 cmcm ×× 18.0 cmcm square loop of wire lies in the xy-plane with its bottom edge on the x-axis. The resistance of the loop is 0.500 ΩΩ . A magnetic field parallel to the z-axis is given by BBB == 0.780 y2ty2t, where BBB is in tesla, yyy in meters, and t in seconds. What is the size of the induced current in the loop at ttt = 0.500 ss ?

  • A 17.0 cm × 17.0 cm square loop of wire lies in the xy-plane with its...

    A 17.0 cm × 17.0 cm square loop of wire lies in the xy-plane with its bottom edge on the x-axis. The resistance of the loop is 0.540 Ω . A magnetic field parallel to the z-axis is given by B = 0.820 y2t, where B is in tesla, y is in meters, and t is in seconds. What is the size of the induced current in the loop at t = 0.520 s ?

  • A 20.0 cm × 20.0 cm square loop of wire lies in the xy-plane with its...

    A 20.0 cm × 20.0 cm square loop of wire lies in the xy-plane with its bottom edge on the x-axis. The resistance of the loop is 0.530 Ω . A magnetic field parallel to the z-axis is given by B = 0.850 y2t, where B is in tesla, y is in meters, and t is in seconds. What is the size of the induced current in the loop at t = 0.460 s ?

  • A 16.0 cm × 16.0 cm square loop of wire lies in the xy-plane with its...

    A 16.0 cm × 16.0 cm square loop of wire lies in the xy-plane with its bottom edge on the x-axis. The resistance of the loop is 0.500 Ω . A magnetic field parallel to the z-axis is given by B = 0.840 y2t, where B is in tesla, y in meters, and t in seconds. What is the size of the induced current in the loop at t = 0.520 s? Answer is in mA units.

  • A rectangular loop of current carrying wire lies in the xy-plane. The rectangle measures 0.597 m...

    A rectangular loop of current carrying wire lies in the xy-plane. The rectangle measures 0.597 m by 0.575 m and carries a current of 0.402 A. The loop is in an external magnetic field. The loop has 25.8 J of potential energy and feels a torque of magnitude 6.59 Nm. What is the magnitude of the external magnetic field?

  • A circular loop of wire, centered at the origin, lies in the xy plane. The loop has a radius of 1...

    A circular loop of wire, centered at the origin, lies in the xy plane. The loop has a radius of 10.0cm. A cylindrical magnet (radius 0.5 cm and length-5 cm) starts out at rest with its primary axis along the z-axis. The bottom tip of the magnet is a north-pole and is situated at z 8 cm. The magnet is dropped straight down so that it falls north- pole down and it goes straight through the center of the loop....

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