e drawing shows three point charges fixed in place. The charge at the coordinate origin ha lue of q₁ = +8.00 µC; the other two charges have identical magnitudes, but opposite signs: 00 µC and 93 = +5.00 µC. (a) Draw the free-body diagram showing the forces that act on t int charge q₁. (b) Determine the net force (magnitude and direction) exerted on 9₁ by the o charges. (c) If q₁ had a mass of 1.50 g and it were free to move, what would be its celeration? 1.30 m 25.0° 25.0⁰ 1.30 m 92 93 +X

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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The drawing shows three point charges fixed in place. The charge at the coordinate origin has a
value of q₁ = +8.00 µC; the other two charges have identical magnitudes, but opposite signs: 92 =
-5.00 μC and 93 = +5.00 µC. (a) Draw the free-body diagram showing the forces that act on the
point charge q₁. (b) Determine the net force (magnitude and direction) exerted on 9₁ by the other
two charges. (c) If q₁ had a mass of 1.50 g and it were free to move, what would be its
acceleration?
1.30 m.
25.0°
25.0⁰
1.30 m
92
93
+x
Transcribed Image Text:The drawing shows three point charges fixed in place. The charge at the coordinate origin has a value of q₁ = +8.00 µC; the other two charges have identical magnitudes, but opposite signs: 92 = -5.00 μC and 93 = +5.00 µC. (a) Draw the free-body diagram showing the forces that act on the point charge q₁. (b) Determine the net force (magnitude and direction) exerted on 9₁ by the other two charges. (c) If q₁ had a mass of 1.50 g and it were free to move, what would be its acceleration? 1.30 m. 25.0° 25.0⁰ 1.30 m 92 93 +x
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