Two fixed positively charged balls (q 1 = 1× 10-ºC; q 2 =?) are separated by a distance d = 0.3 m. If the Coulomb force between the two charges is F = 10-6N, then the charge q, is equal to: (ke = 9 × 10° N.m²/C³) 10^-9 C 10^-8 C 10^-7 C 10^-2 C 10^-6 C
Two fixed positively charged balls (q 1 = 1× 10-ºC; q 2 =?) are separated by a distance d = 0.3 m. If the Coulomb force between the two charges is F = 10-6N, then the charge q, is equal to: (ke = 9 × 10° N.m²/C³) 10^-9 C 10^-8 C 10^-7 C 10^-2 C 10^-6 C
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Chapter1: Units, Trigonometry. And Vectors
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
Transcribed Image Text:Two fixed positively charged balls (q 1 = 1 × 10-ºC; q 2 =?) are separated by a distance d = 0.3 m.
If the Coulomb force between the two charges is F = 10-6N, then the charge q2 is equal to:
(ke = 9 × 10° N.m²/C²)
10^-9 C
10^-8 C
10^-7 C
10^-2 C
10^-6 C
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