A carbon-14 ion with a charge of +6.408x10^-19 C and a mass of 2.34x10^-26 kg is sent through a mass spectrometer and hits a detector at a point 10.0 cm to the left of where the beam leaves the velocity selector. The velocity selector and the detector are both in a region of magentic field of strength 0.500 T. What are the magnitude and direction of the electric field in the velocity selector where the particels travel in a straight line for 15.0 cm?
A carbon-14 ion with a charge of +6.408x10^-19 C and a mass of 2.34x10^-26 kg is sent through a mass spectrometer and hits a detector at a point 10.0 cm to the left of where the beam leaves the velocity selector. The velocity selector and the detector are both in a region of magentic field of strength 0.500 T.
What are the magnitude and direction of the electric field in the velocity selector where the particels travel in a straight line for 15.0 cm?
Please also explain and show the steps you used to get there/the physics behind why/how you got to the answer to help me better understand. Thank you soo much. Also, the work and the explanation or most important because I already have the correct answer - I'm just unsure of how to get there.
![Region of
uniform
Particle
path
magnetic field
10.0 cm
Accelerating
plates
B
detector
15.0 cm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1b8dfa5f-fa2d-44fa-8475-43ecf0d5d49a%2F12d176ee-9167-4ec0-af31-13f881ae8cb3%2F7o70vrk_processed.jpeg&w=3840&q=75)
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