Problem 8: The magnetic field of an electromagnetic wave is described by B, = Bocos(kx - wt), where Bo = 2.5 x 10-6 T and w = 6.5 x 10' rad's. Randomized Variables Bo = 2.5 x 10-6 T = 6.5 x 10' rad/s Part (a) What is the amplitude of the corresponding electric field oscillations, Eo, in terms of Bo? E, = 8 9. HOME Bo AL 4 5 6. d 1 2 3. h 1 j END VOl BACKSPACE CLEAR m Submit Hint Feedback I give up! Part (b) Calculate the electric field E, in volts per meter. Part (c) What is the frequency of the electromagnetic wave, f, in terms of w? f= co( 2 x)

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Chapter1: Units, Trigonometry. And Vectors
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Problem 8: The magnetic field of an electromagnetic wave is described by B, = Bocos(kx - ot), where Bo = 2.5 x 10-6 T and o = 6.5 x 10' rad/s.
Randomized Variables
Bo = 2.5 x 10-6 T
w = 6.5 x 107 rad's
Part (a) What is the amplitude of the corresponding electric field oscillations, Eg, in terms of Bo?
E, =
7
8.
9
HOME
Во
4
5
6.
d
2
3
h
i
+
END
P
vol BACKSPACE DEL CLEAR
m
t
Submit
I give up!
Hint
Feedback
Part (b) Calculate the electric field En in volts per meter.
Part (c) What is the frequency of the electromagnetic wave, f, in terms of w?
f- co( 2 n) v
Part (d) What is the wavelength of the electromagnetic wave, 1, in terms of w and the speed of light c?
i = c/( o/( 2 n)) v
Part (e) Calculate the wavelength i in meters.
Transcribed Image Text:Problem 8: The magnetic field of an electromagnetic wave is described by B, = Bocos(kx - ot), where Bo = 2.5 x 10-6 T and o = 6.5 x 10' rad/s. Randomized Variables Bo = 2.5 x 10-6 T w = 6.5 x 107 rad's Part (a) What is the amplitude of the corresponding electric field oscillations, Eg, in terms of Bo? E, = 7 8. 9 HOME Во 4 5 6. d 2 3 h i + END P vol BACKSPACE DEL CLEAR m t Submit I give up! Hint Feedback Part (b) Calculate the electric field En in volts per meter. Part (c) What is the frequency of the electromagnetic wave, f, in terms of w? f- co( 2 n) v Part (d) What is the wavelength of the electromagnetic wave, 1, in terms of w and the speed of light c? i = c/( o/( 2 n)) v Part (e) Calculate the wavelength i in meters.
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