(#627456) (Motion of Charge in Field) An electron of mass me = 9.11 x 10" 9.11 x 10-31 kg and a charge of qe = kg and a charge of qe = -1.60 x 10-19 C is released, from rest, in a region of uniform electric field that points to the right with a magnitude of |E -2.18 N/C. How long does it take for the electron to reach a speed of 2.33 x 104 m/s? Assume the experiment is performed in a vacuum and that you can ignore the effects of gravity and friction. Give you answer in units of seconds. Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8

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(#627456) (Motion of Charge in Field)
An electron of mass me = 9.11 x 10"
9.11 x 10-31 kg and a charge of qe =
kg and a charge of qe = -1.60 x 10-19 C is released, from rest, in a region of uniform electric field that points to the
right with a magnitude of |E -2.18 N/C. How long does it take for the electron to reach a speed of 2.33 x 104 m/s? Assume the experiment is performed in a
vacuum and that you can ignore the effects of gravity and friction. Give you answer in units of seconds.
Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8
Transcribed Image Text:(#627456) (Motion of Charge in Field) An electron of mass me = 9.11 x 10" 9.11 x 10-31 kg and a charge of qe = kg and a charge of qe = -1.60 x 10-19 C is released, from rest, in a region of uniform electric field that points to the right with a magnitude of |E -2.18 N/C. How long does it take for the electron to reach a speed of 2.33 x 104 m/s? Assume the experiment is performed in a vacuum and that you can ignore the effects of gravity and friction. Give you answer in units of seconds. Please enter a numerical answer below. Accepted formats are numbers or "e" based scientific notation e.g. 0.23, -2, 1e6, 5.23e-8
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