12. If were to model the balloons as point charges, with the green balloon having a charge of q1 = -4µC (microcoulombs, or 10-6 C), and the yellow balloon having a charge q2 = -6 μC, with a separation distance r = 1 cm, then the electric force between them could be calculated using Coulomb's law: F = a) 0.216 N b) 216.0 N c) 2160 N d) 2.16 x 1015 N Klq₁llqzl 7-2 where K is the electrostatic constant 9 x 109 Nm²/C² After doing our calculations, we would find this force to be

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Chapter1: Units, Trigonometry. And Vectors
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12. If were to model the balloons as point charges, with the green balloon having a
charge of q1 = -4μC (microcoulombs, or 10-6 C), and the yellow balloon having a charge
q2 = -6 μC, with a separation distance r = 1 cm, then the electric force between them
could be calculated using Coulomb's law:
Text Predictions: On
arch
a) 0.216 N
b) 216.0 N
c) 2160 N
d) 2.16 x 1015 N
where K is the electrostatic constant 9 x 109 Nm²/C²
After doing our calculations, we would find this force to be
Accessibility: Investigate
F =
Et
Klailla₂1
7-2
Focus
92°F Partly cloudy
Transcribed Image Text:12. If were to model the balloons as point charges, with the green balloon having a charge of q1 = -4μC (microcoulombs, or 10-6 C), and the yellow balloon having a charge q2 = -6 μC, with a separation distance r = 1 cm, then the electric force between them could be calculated using Coulomb's law: Text Predictions: On arch a) 0.216 N b) 216.0 N c) 2160 N d) 2.16 x 1015 N where K is the electrostatic constant 9 x 109 Nm²/C² After doing our calculations, we would find this force to be Accessibility: Investigate F = Et Klailla₂1 7-2 Focus 92°F Partly cloudy
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