Two point charges of 3 nC and -4 nC are placed, respectively, at (0, 0, 1 m) and (0,0,2 m) while an infinite conducting plane is at z = 0. Determine (a) The total charge induced on the plane (b) The magnitude of the force of attraction between the charges and the plane

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Chapter7: Electric Potential
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tribution and the electric field strength in the region between the shells.
3. (i)
Two point charges of 3 nC and -4 nC are placed, respectively, at (0, 0, 1 m) and
(0, 0, 2 m) while an infinite conducting plane is at z = 0. Determine
(a) The total charge induced on the plane
(b) The magnitude of the force of attraction between the charges and the plane
3(ii)
Two point charges of 50 nC and - 20 nC are located at (-3, 2, 4) and (1, 0, 5) above the
conducting ground plane z 2. Calculate (a) the surface charge density at (7, -2, 2),
(b) D at (3, 4, 8), and (c) D at (1, 1, 1).
15:33
P Type here to search
W.
30°C
A O 4 ENG
04-10-2021
Transcribed Image Text:A "repdf A Elements of Electromagnetic x A "DA pdf A "unit-ll.pdf [Salutions Manuall Elements x+ O File G:/Fs21-22/F1-ECE1003/DA.pdf Not syncing ... of 2 Q + D Page view A Read aloud V Draw Y Highlight O Erase tribution and the electric field strength in the region between the shells. 3. (i) Two point charges of 3 nC and -4 nC are placed, respectively, at (0, 0, 1 m) and (0, 0, 2 m) while an infinite conducting plane is at z = 0. Determine (a) The total charge induced on the plane (b) The magnitude of the force of attraction between the charges and the plane 3(ii) Two point charges of 50 nC and - 20 nC are located at (-3, 2, 4) and (1, 0, 5) above the conducting ground plane z 2. Calculate (a) the surface charge density at (7, -2, 2), (b) D at (3, 4, 8), and (c) D at (1, 1, 1). 15:33 P Type here to search W. 30°C A O 4 ENG 04-10-2021
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