Question

An infinite line of positive charge lies along the y axis, with charge density λ = 1.50 fC/m. A dipole is placed with its center along the x axis at x = 27.0 cm. The dipole consists of two charges ±10.0 pC separated by 2.00 cm. The axis of the dipole makes an angle of 30.0° with the x axis, and the positive charge is farther from the line of charge than the negative charge. Find the net force exerted on the dipole F = 0.74 Noed Help?d

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

LEl due to lann tine of chens 2521 719 .8

Add a comment
Know the answer?
Add Answer to:
An infinite line of positive charge lies along the y axis, with charge density λ =...
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
  • 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 = 2.20 µC/m. A dipole is placed with its center along the x axis at x = 27.0 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...

  • 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...

  • An infinite line of positive charge lies along the y axis, with charge density λ = 1.80 µC/m. A dipole is placed with it...

    An infinite line of positive charge lies along the y axis, with charge density λ = 1.80 µC/m. A dipole is placed with its center along the x axis at x = 21.0 cm. The dipole consists of two charges ±10.0 µC separated by 2.00 cm. The axis of the dipole makes an angle of 30.0° with the x axis, and the positive charge is farther from the line of charge than the negative charge. Find the net force exerted...

  • An infinite line of charge with a uniform linear charge density λ runs along the ˆz-axis....

    An infinite line of charge with a uniform linear charge density λ runs along the ˆz-axis. This line also lies along the axis of an infinite dielectric shell, of dielectric constant K, whose inner radius is a and whose outer radius is b, and an infinite, neutral conducting shell whose inner radius is b and whose outer radius is c. a. What is the electric field everywhere in space? b. What is the surface charge density on the inner surface...

  • An infinite line of uniform positive charge runs along the x axis and has a line...

    An infinite line of uniform positive charge runs along the x axis and has a line charge density of λ= 24.7​m​​nC​​. Consider the point (0 m, 3.42 m) which is located 3.42 meters above the infinite line. What is the magnitude of the electric field at this point?

  • An infinite line of uniform positive charge runs along the x axis and has a line...

    An infinite line of uniform positive charge runs along the x axis and has a line charge density of \lambda = 26.5 \frac{nC}{m}λ=26.5​m​​nC​​. Consider the point (0 m, 2.67 m) which is located 2.67 meters above the infinite line. What is the magnitude of the electric field at this point?

  • 30 An infinite line of charge with linear density λ,--S6pcim is positioned along the axis of...

    30 An infinite line of charge with linear density λ,--S6pcim is positioned along the axis of a thick conducting shell of inner radius a 3.4 cm and outer radius b-54 cm and infinite length. The conducting shell is uniformly charged with a linear charge density A 2 3.5 uC/m 1) What is EXP), the electric field at point P, located at (x,y)卟7.6cm, 0cm) ? NIC Submit 2) What is Ey/P), the electric field at point P, located at (xy)-(-7.6 cm,...

  • An infinite line of charge with charge density λ 1 =-2.5 pC/cm is aligned with the...

    An infinite line of charge with charge density λ 1 =-2.5 pC/cm is aligned with the y-axis as shown Ci Stan Pro 1) What is Ex(P) ), the value of the x-component of the electric field produced by by the tine of charge at point P which is located at (x,y)-(a,0), where a . 9.1 cm? -49450549.45 N/C Submit Your submissions: 49450549.45

  • 8 A semi-infinite thin rod has a uniform linear positive charge density λ and is located along th...

    8 A semi-infinite thin rod has a uniform linear positive charge density λ and is located along the x-axis between x = x° (>0) and x = +ㆀ. Find the electric field at the origin. Hint: Ja .2 = a-b A.의 dx 1 B. 一巡i E. zero 8 A semi-infinite thin rod has a uniform linear positive charge density λ and is located along the x-axis between x = x° (>0) and x = +ㆀ. Find the electric field at...

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