Question

A dipole with ±6.0 μC charges is positioned so that the positive charge is 1.0 mm...

A dipole with ±6.0 μC charges is positioned so that the positive charge is 1.0 mm to the right of the origin and the negative charge is at the origin. How much work does it take to bring a 10.0 μC charge from infinity to a position x = 3.0 mm, y = 0.0 mm?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A dipole with ±6.0 μC charges is positioned so that the positive charge is 1.0 mm...
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 charge of 20.0-μC is held fixed at the origin. A -5.0-μC charge with a mass...

    A charge of 20.0-μC is held fixed at the origin. A -5.0-μC charge with a mass of 10.0 g is launched (outwards) from the position (1.0 m, 1.0 m) at a speed of 12.0 m/s. (a) At what distance from the origin will its speed be reduced to 6.0 m/s? (b) Will it ever halt? If yes, at what distance will it halt? Three point charges are located at the corners of an equilateral triangle, whose side l = 0.5...

  • 28) A 7.0-μC point-like charged object and a 9.0-μC point-like charged object are initially extremely far...

    28) A 7.0-μC point-like charged object and a 9.0-μC point-like charged object are initially extremely far apart. How much work does it take to bring the 7.0-μC object to the position x = 3.0 mm, y = 0.0 mm, and the 9.0-μC object to the position x = -3.0 mm, y = 0.0 mm? (k = 9.0 × 109 N∙m2/C2) A) 95 J B) 190 J C) 63 J D) 16 J

  • A point charge of +3.0 C is situated at the origin of a set of coordinates and a point charge of +6.0 C is situated at coordinates

    a)A point charge of +3.0 C is situated at the origin of a set of coordinates and a point charge of +6.0 C is situated at coordinates (3.0 m, 4.0 m). Calculate the change in the electrostatic potential energy of the system if the second charge is moved from its initial position to coordinates (3.0 m, 0.0 m). Assume the charges are in a vacuum. b)ln a certain region of space, there is a uniform electric field of magnitude 10.0 V...

  • Two charges (dipole) of +q = +6.00 μC and −q = −6.00 μC along the y-axis,...

    Two charges (dipole) of +q = +6.00 μC and −q = −6.00 μC along the y-axis, separated by 3.00 m, as shown in the figure below. Point P is located 4.00 m directly to the right of the positive charge, as shown. The origin is located halfway between the charges. (a) At point P (test point), sketch and label the electric field E+ due to the positive charge +q, and the electric field E - due to the negative charge...

  • Question 2: Three charges lie along the x axis. The positive charge q1 = 15.0 μC...

    Question 2: Three charges lie along the x axis. The positive charge q1 = 15.0 μC is at x = 2.00 m, and the positive charge q2-6.00 μC is at the origin, where a negative charge q3 must be placed on the x axis such that the resultant force on it is zero. Find the position of charge q3

  • Two point charges lie on the x axis. A charge of 9.6 μC is at the...

    Two point charges lie on the x axis. A charge of 9.6 μC is at the origin, and a charge of -4.3 μC is at x= 10 cm . A)At what position x would a third charge q3 be in equilibrium? please show how you got to the answer B) Does your answer to part A depend on whether q3 is positive or negative? Explain. My guess is yes but I can't explain why so pls help, thanks!

  • Identical point charges q1 and q2 each have a positive charge +6.00 μC. Charge q1 is...

    Identical point charges q1 and q2 each have a positive charge +6.00 μC. Charge q1 is held fixed on the x-axis at x=+0.400 m, and q2 is held fixed on the x-axis at x=−0.400 m. A small sphere has charge Q=−0.200 μC and mass 12.0 g. The sphere is initially very far from the origin. It is released from rest and moves along the y-axis toward the origin. (a) As the sphere moves from very large y to y=0, how...

  • Three charges are placed on the x-axis. q1= 10.0 μC at x = 1.0 cm q2=...

    Three charges are placed on the x-axis. q1= 10.0 μC at x = 1.0 cm q2= -2.0 μC at x = 0.0 cm Where must the positive q3 be placed so that the resultant electric force = 0?

  • A 5-μC positive point charge is located at the origin and a 6 μC positive point...

    A 5-μC positive point charge is located at the origin and a 6 μC positive point charge is located at x = 0.00 m, y = 1.0 m. Find the coordinates of the point where the net electric field strength due to these charges is zero. a) x = 0.00 m, y = 0.62 m b) x = 0.00 m, y = 0.48 m c) x = 0.00 m, y = 0.34 m d) x = 0.00 m, y =...

  • An infinite line of positive charge lies along the y axis, with charge density λ =...

    An infinite line of positive charge lies along the y axis, with charge density λ = 2.30 μC/m. A dipole is placed with its center along the x axis at x = 28.0 cm. The dipole consists of two charges ±10.0 μC separated by 2.00 cm. The axis of the dipole makes an angle of 45.0° with the x axis, and the positive charge is farther from the line of charge than the negative charge. Find the net force exerted...

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