+2,4 µC +29 µC -OT Figure 5 Figure 5 shows two point charges of magnitudes +2.4µC and +2.9µC located at points P and Q along a straight line ST. A It is not possible for the resultant electric field due to these charges to be zero any where along the line between P and Q B The point where the resultant electric field due to these charges is zero lies at a point midway between P andQ C The point where the resultant electric field due to these charges is zero lies at a point between P and Q that is closer to Q than to P D The point where the resultant electric field due to these charges is zero lies at G point between P and Q that is closer to P than to Q. S.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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17.
+2,4 µC
+ 2.9 µC
P.
-OT
So
Figure 5
Figure 5 shows two point charges of
magnitudes +2.4µC and +2.9µC located at
points P and Q along a straight line ST.
A It is not possible for the resultant
electric field due to these charges to be
zero any where along the line between
P and Q
B The point where the resultant electric
field due to these charges is zero lies at
a point midway between P andQ
C The point where the resultant electric
field due to these charges is zero lies at
a point between P and Q that is closer
to Q than to P
D The point where the resultant electric
field due to these charges is zero lies at G
point between P and Q that is closer to P
than to Q.
Transcribed Image Text:17. +2,4 µC + 2.9 µC P. -OT So Figure 5 Figure 5 shows two point charges of magnitudes +2.4µC and +2.9µC located at points P and Q along a straight line ST. A It is not possible for the resultant electric field due to these charges to be zero any where along the line between P and Q B The point where the resultant electric field due to these charges is zero lies at a point midway between P andQ C The point where the resultant electric field due to these charges is zero lies at a point between P and Q that is closer to Q than to P D The point where the resultant electric field due to these charges is zero lies at G point between P and Q that is closer to P than to Q.
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