Q3/ A total charge of 60/3 nC is uniformally distributed in the form of a circular disk of radius 2 m. Find the potential due to this charge at a point on the Z axis, 4 m from the disk. Compare this potential with that which results if all of the charge is at the center of the disk. 1 Add file
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- Review I Constants Part A Charge q1 is distance r from a positive point charge Q. Charge q2 = q1/3 is distance 2r from Q. What is the ratio U1/U2 of their potential energies due to their interactions with Q? U1/U2 = Submit Request Answer Part B Charge q1 is distance s from the negative plate of a parallel-plate capacitor. Charge q2 = qi/3 is distance 2s from the negative plate. What is the ratio U1/U2 of their potential energies? U1/U2 = %3D Submit Request Answer26. E Two equipotential surfaces surround a +1.50 x 10-8 C point charge. How far is the 190-V surface from the 75.0-V surface? 27. E An equipotential surface that surrounds a point charge q has a potential of 490 V and an area of 1.1 m². Determine q.Question B
- Please HelpE8P2Part A What is the charge on each capacitor in the figure, if AV = 9.0 V ?(Figure 1) Enter your answers numerically separated by commas. Q1, Q2, Q3 = µč Submit Previous Answers Request Answer gure 1 of 1 X Incorrect; Try Again; 28 attempts remaining Part B + =4 µF What is the potential difference across each capacitor in the figure? C=5 µF AV Enter your answers numerically separated by commas. C; = 6 µF Hνα ΑΣφ AV, AV2, AV; = V
- Please write clearlyLast Revised 12/21/2015 Equipotential Surfaces – 3.2 4) How much work would you have to do to move a 7nC charge along the dashed line path from point P1 to point P2 in figure 1? E Figure 1: Notice that the angle o is the angle between the path taken and the electric field vector. a) Take the electric field shown below to have a constant value of 1500V/m, the distance between P1 and P2 to be 3.00cm, and the angle 0 to be 40° . Show your work. b) What would be the value if the charged moved was a -7nC charge instead? Explain what this answer means in terms of the work being done. Last Revised 12/21/2015 Equipotential Surfaces – 3.3What is the excess charge on a conducting sphere of radius r = 0.14 m if the potential of the sphere is 2100 V and V = 0 at infinity? Number i Units eTextbook and Media