As shown in Figure, a beam of particles of charge q enters a region where an field is uniform and directed downwards. Its value is 80 kV/m. electric Perpendicular to E and directed into the page is a magnetic field B = 0.4T. (i) If the speed of the particles is properly chosen, the particles will not be 040219004 deflected by these crossed electric and magnetic fields. What speed is selected in this case? (ii) If the electric field is cut off and the same magnetic field is maintained, the charged particles move in the magnetic field in a circular path of radius 1.14 cm. Determine the ratio of the electric charge to the mass of the particles. E=80 kV/m B=0.4T (into page) Figure

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As shown in Figure, a beam of particles of charge q enters a region where an
electric field is uniform and directed downwards. Its value is 80 kV/m.
Perpendicular to E and directed into the page is a magnetic field B =
0.4 T.
(i) If the speed of the particles is properly chosen, the particles will not be
deflected by these crossed electric and magnetic fields. What speed is
selected in this case?
(ii) If the electric field is cut off and the same magnetic field is maintained,
the charged particles move in the magnetic field in a circular path of
radius 1.14 cm. Determine the ratio of the electric charge to the mass of
the particles.
0402190040
E=80 kV/m
B=0.4 T
(into page)
Figure
Transcribed Image Text:As shown in Figure, a beam of particles of charge q enters a region where an electric field is uniform and directed downwards. Its value is 80 kV/m. Perpendicular to E and directed into the page is a magnetic field B = 0.4 T. (i) If the speed of the particles is properly chosen, the particles will not be deflected by these crossed electric and magnetic fields. What speed is selected in this case? (ii) If the electric field is cut off and the same magnetic field is maintained, the charged particles move in the magnetic field in a circular path of radius 1.14 cm. Determine the ratio of the electric charge to the mass of the particles. 0402190040 E=80 kV/m B=0.4 T (into page) Figure
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