One particle has a mass of 4.93 x 103 kg and a charge of +8.41 μC. A second particle has a mass of 7.70 x 103 kg and the same charge. The two particles are initially held in place and then released. The particles fly apart, and when the separation between them is 0.139 m, the speed of the 4.93 x 103 kg-particle is 107 m/s. Find the initial separation between the particles. V2,B 42 92 41 91 V1.B Number Units B

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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One particle has a mass of 4.93 x 103 kg and a charge of +8.41 μC. A second particle has a mass of 7.70 x 103 kg and the same charge.
The two particles are initially held in place and then released. The particles fly apart, and when the separation between them is 0.139
m, the speed of the 4.93 x 103 kg-particle is 107 m/s. Find the initial separation between the particles.
V2,B
42
92
41
91
V1.B
Number
Units
B
Transcribed Image Text:One particle has a mass of 4.93 x 103 kg and a charge of +8.41 μC. A second particle has a mass of 7.70 x 103 kg and the same charge. The two particles are initially held in place and then released. The particles fly apart, and when the separation between them is 0.139 m, the speed of the 4.93 x 103 kg-particle is 107 m/s. Find the initial separation between the particles. V2,B 42 92 41 91 V1.B Number Units B
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