Question

How much electric potential energy does 1.9 μC of charge gain as it moves from the...

How much electric potential energy does 1.9 μC of charge gain as it moves from the negative terminal to the positive terminal of a 1.6 V battery?

Express your answer with the appropriate units.

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

q= 1.9 uC = 1.9 x 10-6 C

Potential difference V = 1.6 Volt

potential energy U = qV

U = (1.9 x 10-6 C)(1.6)

U = 3.04 x 10-6 J

Add a comment
Know the answer?
Add Answer to:
How much electric potential energy does 1.9 μC of charge gain as it moves from 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
  • How much work does the charge escalator do to move 2.10 μC of charge from the...

    How much work does the charge escalator do to move 2.10 μC of charge from the negative terminal to the positive terminal of a 2.50 V battery? Express your answer with the appropriate units.

  • 1. A 9.0 V battery supplies a 3.5 mA current to a circuit for 6.0 h....

    1. A 9.0 V battery supplies a 3.5 mA current to a circuit for 6.0 h. A. How much charge has been transferred from the negative to the positive terminal? B. How much electric potential energy has been gained by the charges that passed through the battery? 2. How much electric potential energy does 1.4 μC of charge gain as it moves from the negative terminal to the positive terminal of a 1.6 V battery?

  • Part A How much work does the charge escalator do to move 220 C of charge...

    Part A How much work does the charge escalator do to move 220 C of charge from the negative terminal to the positive terminal of a 400 V battery? Express your answer with the appropriate units. HA ? W = Value Units Submit Request Answer

  • Part A la Review l Constants Periodic Table How much charge moves through the battery each...

    Part A la Review l Constants Periodic Table How much charge moves through the battery each second? Express your answer with the appropriate units A laptop battery has an emf of 10.2 V. The laptop uses 0.70 A while running. qValu Vanie Units Submit Previous Answers Request Answer Incorrect; Try Again; 5 attempts remaining Part By how much does the electric potential energy of this charge increase as it moves through the bettery? Express your answer with the appropriate units....

  • How much work does the electric field do in moving a -8.0 μC charge from ground...

    How much work does the electric field do in moving a -8.0 μC charge from ground to a point whose potential is +70 V higher?

  • If a positive charge moves toward higher electric potential, what will happen to its electric potential...

    If a positive charge moves toward higher electric potential, what will happen to its electric potential energy? How about if it moves along an equipotential? If a negative charge moves toward higher electric potential, what will happen to its electric potential energy? How about if it moves akng an equipotential ?

  • 1. What is the emf of a battery that increases the electric potential energy of 0.050...

    1. What is the emf of a battery that increases the electric potential energy of 0.050 C of charge by 0.60 J as it moves from the negative to the positive terminal? 2 .A thermistor is a device whose resistance varies with temperature. At 20∘C a thermistor's resistance is 10.0 kΩ. When connected to a 1.2 V battery, the current through the thermistor increases by 20 μA as the temperature increases to 30∘C. What is the thermistor's resistance at this...

  • A point charge q1 = +2.40 μC is held stationary at the origin. A second point...

    A point charge q1 = +2.40 μC is held stationary at the origin. A second point charge q2 = -4.30 μC moves from the point x= 0.175 mm, y= 0, to the point x = 0.260 mm, y = 0.260 mm. Part A What is the change in potential energy of the pair of charges? Part B How much work is done by the electric force on q2? < Homework 3 Ch 17 and 18 Winter 2020 Item 6 ®...

  • 1- How far from a -7.80 μC point charge must a 2.10 μC point charge be...

    1- How far from a -7.80 μC point charge must a 2.10 μC point charge be placed in order for the electric potential energy of the pair of charges to be -0.500 J ? (Take the energy to be zero when the charges are infinitely far apart.) d= ------m 2- Two stationary positive point charges, charge 1 of magnitude 3.50 nC and charge 2 of magnitude 2.00 nC , are separated by a distance of 37.0 cm . An electron...

  • Part A If a capacitor has opposite 5.0 μC charges on the plates, and an electric...

    Part A If a capacitor has opposite 5.0 μC charges on the plates, and an electric field of 2.4 kV/mm is desired between the plates, what must each plate's area be? Express your answer using two significant figures and include the appropriate units. Part B How much kinetic energy will an electron gain (in joules) if it accelerates through a potential difference of 1.69×104 V ? Part C How much kinetic energy will an electron gain (in eV) if it...

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