1. Find the magnitude and direction of the Lorentz force on an individual electron as it moves through a magnetic field. B = 0.85 T q = +1.7 x 10-9 C v = 4.1 x 103 B = 1.10 T q = -3.5 x 10-8 C v = 1.3 x 104 m 30° B = 1.45 T B = 0.30 T q = +4.1 x 10¬-8 C ü = 7,9x 103 q = +8.6 x 10-7 C m v = 2.5 x 10* т

Principles of Physics: A Calculus-Based Text
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Chapter24: Electromagnetic Waves
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1. Find the magnitude and direction of the Lorentz force on an individual electron as it moves through a
magnetic field.
B = 1.10 T
B = 0.85 T
q = +1.7 × 10-9 C
v = 4.1 × 103
q = -3.5 x 10-8 C
v = 1.3 x 104
m
m
30°
B = 1.45 T
B = 0.30 T
q = +4.1 x 10-8 C
v = 7,9× 103
q = +8.6 x 10-7 C
m
v = 2.5 × 104
m
1.
Transcribed Image Text:1. Find the magnitude and direction of the Lorentz force on an individual electron as it moves through a magnetic field. B = 1.10 T B = 0.85 T q = +1.7 × 10-9 C v = 4.1 × 103 q = -3.5 x 10-8 C v = 1.3 x 104 m m 30° B = 1.45 T B = 0.30 T q = +4.1 x 10-8 C v = 7,9× 103 q = +8.6 x 10-7 C m v = 2.5 × 104 m 1.
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