35 In Fig. 21-24, three charged particles lie on an x axis. Particles 1 and 2 are fixed in place. Particle 3 is free to move, but the net elec- trostatic force on it from particles 1 and 2 happens to be zero. If 2.0L23 = L12, what is the ratio qı1q;? L12 3 2.
35 In Fig. 21-24, three charged particles lie on an x axis. Particles 1 and 2 are fixed in place. Particle 3 is free to move, but the net elec- trostatic force on it from particles 1 and 2 happens to be zero. If 2.0L23 = L12, what is the ratio qı1q;? L12 3 2.
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![35 In Fig. 21-24, three charged particles lie on an x axis. Particles
1 and 2 are fixed in place. Particle
3 is free to move, but the net elec-
trostatic force on it from particles
1 and 2 happens to be zero. If
2.0L23 = L12, what is the ratio
qı1q;?
L12
3
2.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F45cc87df-d050-46d5-99c3-0498fd716862%2F1021ee4c-8647-4f30-80a9-650b4d610ee8%2F6ve3ez1m.jpeg&w=3840&q=75)
Transcribed Image Text:35 In Fig. 21-24, three charged particles lie on an x axis. Particles
1 and 2 are fixed in place. Particle
3 is free to move, but the net elec-
trostatic force on it from particles
1 and 2 happens to be zero. If
2.0L23 = L12, what is the ratio
qı1q;?
L12
3
2.
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