Test II. Problem Solving. A beam of proton (g = 1.6 x 10-19 C) moves at 3.0 x 10° m/s through a uniform magnetic field with magnitude 2.0 T that is directed along the positive z-axis. The velocity of each proton lies in the xz-plane at an angle of 30° to the +z-axis. Find the force on a proton. (Clue: Use Right-Hand Rule, to determine its direction.)

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Chapter11: Magnetic Forces And Fields
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Problem 31P: An alpha-particle ( m=6.641027kg , q=3.21019C ) travels in a circular path of radius 25 cm in a...
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Test II. Problem Solving.
A beam of proton (q = 1.6 x 10-19 C) moves at 3.0 x 105 m/s through a uniform magnetic field with magnitude 2.0 T that
is directed along the positive z-axis. The velocity of each proton lies in the xz-plane at an angle of 30° to the +z-axis.
Find the force on a proton. (Clue: Use Right-Hand Rule, to determine its direction.)
Transcribed Image Text:Test II. Problem Solving. A beam of proton (q = 1.6 x 10-19 C) moves at 3.0 x 105 m/s through a uniform magnetic field with magnitude 2.0 T that is directed along the positive z-axis. The velocity of each proton lies in the xz-plane at an angle of 30° to the +z-axis. Find the force on a proton. (Clue: Use Right-Hand Rule, to determine its direction.)
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