An electron is accelerated inside a parallel plate capacitor. The negligible initial velocity and then after the acceleration it hits the positive plate with a final velocity B. Th distance between the plates is 11.6 cm, and the voltage difference is 107 kV. Determine the final velocity of the electron using classical mechanics. (The rest mass of the electron is 9.11x10 31 kg, the rest energ the electron is 511 kev.) 6 471 Y10-1

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An electron is accelerated inside a parallel plate capacitor. The electron leaves the negative plate with à
negligible initial velocity and then after the acceleration it hits the positive plate with a final velocity B. The
distance between the plates is 11.6 cm, and the voltage difference is 107 kV. Determine the final velocity B
of the electron using classical mechanics. (The rest mass of the electron is 9.11x1031 kg, the rest energy of
the electron is 511 kev.)
6.471x10-1
You are correct.
Your receipt no. is 151-494 e Previous Tries
What is the final velocity B of the electron if you use relativistic mechanics?
0.948*10°8
Submit Answer Incorrect. Tries 8/12 Previous Tries
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Transcribed Image Text:An electron is accelerated inside a parallel plate capacitor. The electron leaves the negative plate with à negligible initial velocity and then after the acceleration it hits the positive plate with a final velocity B. The distance between the plates is 11.6 cm, and the voltage difference is 107 kV. Determine the final velocity B of the electron using classical mechanics. (The rest mass of the electron is 9.11x1031 kg, the rest energy of the electron is 511 kev.) 6.471x10-1 You are correct. Your receipt no. is 151-494 e Previous Tries What is the final velocity B of the electron if you use relativistic mechanics? 0.948*10°8 Submit Answer Incorrect. Tries 8/12 Previous Tries Send Feedback Post Discussion
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