24 An electron is accelerated from rest by a potential differ- ence of 350 V. It then enters a uniform magnetic field of magni- tude 200 mT with its velocity perpendicular to the field. Calculate (a) the speed of the electron and (b) the radius of its path in the magnetic field.

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In Problem 24's part b, assume an inbound velocity (the value you would calculate in part (a)) of 1.11 x 107, m/s and a magnetic field of B = 0.22 T, and solve for the radius of the circular path in micrometers. 5 sig figs
QUESTION 5
In Problem 28.24's part b, assume an inbound
velocity (the value you would calculate in part (a))
of 1.11 x 107 m/s and a magnetic field of B = 0.22
T, and solve for the radius of the circular path in
micrometers. 5 sig figs
Transcribed Image Text:QUESTION 5 In Problem 28.24's part b, assume an inbound velocity (the value you would calculate in part (a)) of 1.11 x 107 m/s and a magnetic field of B = 0.22 T, and solve for the radius of the circular path in micrometers. 5 sig figs
•24 An electron is accelerated from rest by a potential differ-
ence of 350 V. It then enters a uniform magnetic field of magni-
tude 200 mT with its velocity perpendicular to the field. Calculate
(a) the speed of the electron and (b) the radius of its path in the
magnetic field.
Transcribed Image Text:•24 An electron is accelerated from rest by a potential differ- ence of 350 V. It then enters a uniform magnetic field of magni- tude 200 mT with its velocity perpendicular to the field. Calculate (a) the speed of the electron and (b) the radius of its path in the magnetic field.
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