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(Solved): An electron accelerates from rest through an electric field and into a magnetic field as shown in th ...



An electron accelerates from rest through an electric field and into a magnetic field as shown in the diagram below. The plates have a potential difference of 35 V, and the magnetic field has a magnitude of 0.50 T. (Remember: me = 9.1 10-31 kg and e = 1.6 10-19 C.) = (a) Calculate the initial speed of the electron upon entering the magnetic field. (b) Calculate the magnitude and direction of the magnetic force on the electron. (c) Calculate the radius of the electron's circular path. -Ye +ve electron X X x X X X

An electron accelerates from rest through an electric field and into a magnetic field as shown in the diagram below. The plat
An electron accelerates from rest through an electric field and into a magnetic field as shown in the diagram below. The plates have a potential difference of , and the magnetic field has a magnitude of . (Remember: and .) (a) Calculate the initial speed of the electron upon entering the magnetic field. (b) Calculate the magnitude and direction of the magnetic force on the electron. (c) Calculate the radius of the electron's circular path.


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Part A.


List down given values in SI units using unit conversion method as required. Use energy conservation to find speed of the electron

The given values are:
V = Potential difference between the plates = 35 V
B = Magnetic field = 0.50 T
  
  v = speed ...
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