Question

A uniform electric field of 1.00 kN/C points in the +x direction. 1) What is the...

A uniform electric field of 1.00 kN/C points in the +x direction.

1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x = -30.0 cm to point b at x = +50.0 cm? (Express your answer to two significant figures.)

NOTE: 1.60 μJ IS INCORRECT

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

Concept: use the relation between potential and electric field to find the potential energy difference,

1000 NkĐ.Co 5m-(-о»)@n9 Note:-youơ answer missed a winuo sign***************************************************************************************************
Check the answer and let me know immediately if you find something wrong... I will rectify the mistakes asap if any

Add a comment
Know the answer?
Add Answer to:
A uniform electric field of 1.00 kN/C points in the +x direction. 1) What is the...
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 uniform electric field of 1.00 kN/C points in the +x direction. 1) What is the...

    A uniform electric field of 1.00 kN/C points in the +x direction. 1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x = -30.0 cm to point b at x = +50.0 cm? (Express your answer to two significant figures.) μJ

  • A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the...

    A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the change in potential energy in μJ of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x = -30.0 cm to point b at x = +50.0 cm? (Express your answer to two significant figures.)

  • A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the...

    A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x = -30.0 cm to point b at x = +50.0 cm? (Express your answer to two significant figures.)

  • How does one solve this problem? A uniform electric field of 4.5Q kN/C points in the...

    How does one solve this problem? A uniform electric field of 4.5Q kN/C points in the +x direction. 1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x =-30.0 cm to point b at x = +50.0 cm? (Express your answer to two significant figures.) Submit

  • A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the...

    A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x--30.0 cm to point b at x- +50.0 cm? (Express your answer to two significant figures.) 0.81 J Submit You currently have 6 submissions for this question. Only 10 submission are allowed You can make 4 more submissions for this question....

  • A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the...

    A uniform electric field of 4.50 kN/C points in the +x direction. 1) What is the change in potential energy of a +2.00 nC test charge, Uelectric, b - Uelectric, a, as it is moved from point a at x--30.0 cm to point b at x- +50.0 cm? (Express your answer to two significant figures.) 0.81 J Submit You currently have 6 submissions for this question. Only 10 submission are allowed You can make 4 more submissions for this question....

  • A uniform electric field with a magnitude of 5500 N/C points in the positive x direction....

    A uniform electric field with a magnitude of 5500 N/C points in the positive x direction. Find the change in electric potential energy when a +11.5-μC charge is moved 6.50 cm in the positive x direction Find the change in electric potential energy when a +11.5-μC charge is moved 6.50 cm in the negative x direction. Find the change in electric potential energy when a +11.5-μC charge is moved 6.50 cm in the positive y direction.

  • A particle with a charge of +4.20 nC is in a uniform electric field È directed in the negative x direction.

    A particle with a charge of +4.20 nC is in a uniform electric field È directed in the negative x direction. It is released from rest, and after it has moved 6.00 cm, its kinetic energy is found to be + 1.50 × 10-6 J. (a) what work was done by the electric force? (b) What was the change in electric potential over the distance that the charge moved? (c) What is the magnitude of E? (d) What was the...

  • A uniform electric field of magnitude 250 V/m is directed in the positive x direction.

    A uniform electric field of magnitude 250 V/m is directed in the positive x direction. A +11.0 μC charge moves from the origin to the point (x, y) = (20.0 cm, 50.0 cm). (a) What is the change in the potential energy of the charge field system? (b) Through what potential difference does the charge move?

  • A uniform electric field of magnitude 210 V/m is directed in the positive x direction. A...

    A uniform electric field of magnitude 210 V/m is directed in the positive x direction. A +10.0 AuC charge moves from the origin to the point (x,y) = (20.0 cm, 50.0 cm). (a) What is the change in the potential energy of the charge field system? (b) Through what potential difference does the charge move?

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