Question

Suppose you have a line of length L that is charged. We will assume that there...

Suppose you have a line of length L that is charged. We will assume that there is a constant charge distribution, λ = a.
Pre1.png

In terms of a, L and dL:

What is the total charge on one half of the line?



What is the total charge on one third of the line?

What is the amount charge on a little bit of length, dL?

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

ine cadbutn Ca)- a de a dし = aL 2 2 g onYour image is not visible

please save and upload it again for more explaniation

and comment below

thanks

Add a comment
Know the answer?
Add Answer to:
Suppose you have a line of length L that is charged. We will assume that there...
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
  • suppose you have a line or length L that IS Charged, we will assume that there...

    suppose you have a line or length L that IS Charged, we will assume that there is a constant charge distribution, л a In terms of a, L and dL: What is the total charge on one half of the line? aL/2dL Submit Answer Incorrect. Tries 4/5 Previous Tries What is the total charge on one third of the line? aL/3 Submit Answer Incorrect. Tries 1/5 Previous Tries What is the amount charge on a little bit of length, dL...

  • You have a uniformly charged rod of length L and total charge Q. You take the...

    You have a uniformly charged rod of length L and total charge Q. You take the rod and bend it into a half circle. What is the electric potential at the center of the “circle” that half circle is a part of?

  • Field at End of Line of Charge A charged rod of length L = 5.60 m...

    Field at End of Line of Charge A charged rod of length L = 5.60 m lies centered on the x axis as shown. The rod has a linear charge density which varies according to λ = ax where a =-583 C/m2 -L/2 +L/2 What is the total charge on the rod? 0.0000 C 4pts You are correct. Your receipt no. is 154-6850.) PreviousTries What is the x component of the electric field at a point on the x axis...

  • continuous object using integrals. Consider a thin, charged rod of length, L. It lies along the...

    continuous object using integrals. Consider a thin, charged rod of length, L. It lies along the x-axis with one end at x = 0 and the other end at x = L. It has a non-uniform linear charge density given by the function λ(x) = −λ0 + Ax , where λ0 and A are both positive constants. (a) What are the units of λ0 and A? Explain. (b) Suppose that λ0 and A are related such that A = 2λ0/L....

  • Field at End of Line of Charge A charged rod of length L = 3.50 m...

    Field at End of Line of Charge A charged rod of length L = 3.50 m lies centered on the x axis as shown. The rod has a linear charge density which varies according to λ = az where a 26.4 pC/m2. LU2 +LU/2 What is the total charge on the rod? 4pts Submit Answer Incorrect. Tries 2/10 Previous Tries What is the z component of the electric field at a point on the z axis a distance of D...

  • dq Given a continuous charge distribution consisting of: A line charge of length L with linear...

    dq Given a continuous charge distribution consisting of: A line charge of length L with linear charge density X A semicircular disc of radius R with surface charge density σ 11. The charge distribution is placed along the x-axis as shown in the figure. The linear charge density is uniform, λ Λο where Λ01s a constant, and the surface charge density varies as σ-00*sin (9) where .00 1s a constant over_charge dq Assume the potential of this distribution is zero...

  • Suppose that you have an infinitely long, uniformly charged cylindrical shell that has a charge per...

    Suppose that you have an infinitely long, uniformly charged cylindrical shell that has a charge per unit length (measured along the infinite direction) of λ. Use Gauss’s law to show a. that the electric field vanishes inside the shell b. that the electric field outside the cylindrical shell is exactly the same as it is for a line of charge with the same charge per unit length.

  • Below we have represented a charged plastic pen as a line of charge. The following two...

    Below we have represented a charged plastic pen as a line of charge. The following two questions will refer to this plastic pen Given the coordinate system in the picture, how would you write the dQ of the pen? Suppose the pen has a total charge of 6.74x10-8 and is 10 cm long. You can use differential' lengths (i.e., dl, dx, dy) in your answer. Submit Answer Tries 0/5 What is the separation vector between any dQ on the pen...

  • Please answer the second question . Thank you. A charged rod of length L = 2.40...

    Please answer the second question . Thank you. A charged rod of length L = 2.40 m lies centered on the x axis as shown. The rod has a linear charge density which varies according to λ = ax where a =-46.8 μΟ1m2. L/2 +L/2 what is the total charge on the rod? 0.0000 C 4pts You are correct. Your receipt no. is 154-1682 what is the x component of the electric field at a point on the x axis...

  • Below we have represented a charged plastic pen as a line of charge. The following two...

    Below we have represented a charged plastic pen as a line of charge. The following two questions will refer to this plastic pen. M outp Given the coordinate system in the picture, how would you write the dQ of the pen? Suppose the pen has a answer dQ- s84 10-9 total charge of 5.84x10 8 C and is 10 cm long. You can use differential lengths (i.e, dl, dx, dy) in your Submit Answer Incorrect. Tries 2/5 Previous ries What...

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