Two charged spheres on a frictionless horizontal surface are attached to opposite ends of a string & are in static equilibrium. The 43 kg red sphere has more charge than the 45 kg green sphere. The total charge magnitude on the spheres is 61 C & they have the same polarity. As a result the tension is 90 N & the centers of the spheres are 0.3 m apart. Determine the charge magnitude on each sphere. Qred (bigger charge) Qgreen (smaller charge) = -

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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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9. [-/10 Points]
DETAILS
MY NOTES
Qred (bigger charge) = ||
Qgreen (smaller charge) =
ASK YOUR TEACHER
Two charged spheres on a frictionless horizontal surface are attached to opposite ends of a string & are in static equilibrium. The 43 kg red sphere has
more charge than the 45 kg green sphere. The total charge magnitude on the spheres is 61 μC & they have the same polarity. As a result the tension is
90 N & the centers of the spheres are 0.3 m apart. Determine the charge magnitude on each sphere.
tions,
the elec
positiv
tions, de
the electr
positive.
Transcribed Image Text:9. [-/10 Points] DETAILS MY NOTES Qred (bigger charge) = || Qgreen (smaller charge) = ASK YOUR TEACHER Two charged spheres on a frictionless horizontal surface are attached to opposite ends of a string & are in static equilibrium. The 43 kg red sphere has more charge than the 45 kg green sphere. The total charge magnitude on the spheres is 61 μC & they have the same polarity. As a result the tension is 90 N & the centers of the spheres are 0.3 m apart. Determine the charge magnitude on each sphere. tions, the elec positiv tions, de the electr positive.
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