ergy 1.20 keV circles in a plane per- bendicular to a uniform magnetic Field. The orbit radius is 25.0 cm. Find V1/2 (V¹/2) Figure 28-38 Problem 20. (a) the electron's speed, (b) the magnetic field magnitude, (c) the circling frequency, and (d) the period of the motion.
ergy 1.20 keV circles in a plane per- bendicular to a uniform magnetic Field. The orbit radius is 25.0 cm. Find V1/2 (V¹/2) Figure 28-38 Problem 20. (a) the electron's speed, (b) the magnetic field magnitude, (c) the circling frequency, and (d) the period of the motion.
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Chapter1: Units, Trigonometry. And Vectors
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Question
For problem 21 calculate the cyclotron period
in nanoseconds using a cyclotron radius of 35.0
cm. (5 sig. figs)
![21 SSM An electron of kinetic en-
ergy 1.20 keV circles in a plane per-
pendicular to a uniform magnetic
field. The orbit radius is 25.0 cm. Find
V1/2 (V¹/2)
Figure 28-38 Problem 20.
(a) the electron's speed, (b) the magnetic field magnitude, (c) the
circling frequency, and (d) the period of the motion.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe8e4ba9c-f4e2-4406-a528-e4a92bd942c6%2Fcb6b84d2-f37b-4bd0-942d-f48c017c5022%2F5kh9i4a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:21 SSM An electron of kinetic en-
ergy 1.20 keV circles in a plane per-
pendicular to a uniform magnetic
field. The orbit radius is 25.0 cm. Find
V1/2 (V¹/2)
Figure 28-38 Problem 20.
(a) the electron's speed, (b) the magnetic field magnitude, (c) the
circling frequency, and (d) the period of the motion.
![QUESTION 4
For problem 28.21 calculate the cyclotron period
in nanoseconds using a cyclotron radius of 35.0
cm. 5 sig. figs.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe8e4ba9c-f4e2-4406-a528-e4a92bd942c6%2Fcb6b84d2-f37b-4bd0-942d-f48c017c5022%2F1j6ecfl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:QUESTION 4
For problem 28.21 calculate the cyclotron period
in nanoseconds using a cyclotron radius of 35.0
cm. 5 sig. figs.
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