Two charges are fixed in place as shown. Regions I, II, and III represent locations along the line connecting the charges. I +6Q A. II D -Q III In which region or regions I, II, III will there be a point along the line connecting the two charges at which the electric potential due to the two charges is zero? Explain your reasoning.

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1.
Two charges are fixed in place as shown. Regions I, II, and III represent locations along
the line connecting the charges.
I +6Q
B.
II
D
-Q
III
A.
In which region or regions I, II, III will there be a point along the line connecting the
two charges at which the electric potential due to the two charges is zero? Explain your
reasoning.
Find all points along the line connecting the charges where the electric potential is
zero (not including points which are infinitely far away). Be sure to label any variables you
define on the figure. Express your answer in terms of D.
Transcribed Image Text:1. Two charges are fixed in place as shown. Regions I, II, and III represent locations along the line connecting the charges. I +6Q B. II D -Q III A. In which region or regions I, II, III will there be a point along the line connecting the two charges at which the electric potential due to the two charges is zero? Explain your reasoning. Find all points along the line connecting the charges where the electric potential is zero (not including points which are infinitely far away). Be sure to label any variables you define on the figure. Express your answer in terms of D.
Constants and conversion
qe = 1.60x10-¹⁹ C
factors that may be useful:
me=9.11x10-³¹ kg mp = 1.67x10-27 kg
Surface area of a sphere = 4TR²
Volume of a sphere = (4/3) лR³
Eo = 8.85x10-12 C²/N-m²
Transcribed Image Text:Constants and conversion qe = 1.60x10-¹⁹ C factors that may be useful: me=9.11x10-³¹ kg mp = 1.67x10-27 kg Surface area of a sphere = 4TR² Volume of a sphere = (4/3) лR³ Eo = 8.85x10-12 C²/N-m²
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