Question 9 A 60.7 µC point charge is moving at a constant 77.8 x 10^(11) m/s in the +y -direction, relative to a reference frame. At the instant when the point charge is at the origin of this reference frame, find the magnetic-field vector B = (B_x, B_y, B_z) it produces at point x = 3.4 m, y = The only question is B_x + B_y +B_z. FYI: The vacuum permeability u o = 4 x 10 H/m. No need to put down the unit/dimension for the answer. Calculated Answer (3 Significant figures) in the form of "0.810 + 2%" Precision) Answer Range + 2%

Principles of Physics: A Calculus-Based Text
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Chapter24: Electromagnetic Waves
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Question 9
A 60.7 µC point charge is moving at a constant 77.8 x 10^(11) m/s in the + y -direction, relative to a reference frame.
At the instant when the point charge is at the origin of this reference frame, find the magnetic-field vector B = (B_x, B_y, B_z) it produces at point x = 3.4 m, y = 0, z = 0.
The only question is B_x + B_y +B_z FYI: The vacuum permeability u 0 = 41 x 10 - H/m.
No need to put down the unit/dimension for the answer. Calculated Answer (3 Significant figures) in the form of "0.810 + 2%"
Precision) Answer Range + 2%
A Moving to another question will save this response.
tg
ho
40
144
Transcribed Image Text:A Moving to another question will save this response. Question 9 A 60.7 µC point charge is moving at a constant 77.8 x 10^(11) m/s in the + y -direction, relative to a reference frame. At the instant when the point charge is at the origin of this reference frame, find the magnetic-field vector B = (B_x, B_y, B_z) it produces at point x = 3.4 m, y = 0, z = 0. The only question is B_x + B_y +B_z FYI: The vacuum permeability u 0 = 41 x 10 - H/m. No need to put down the unit/dimension for the answer. Calculated Answer (3 Significant figures) in the form of "0.810 + 2%" Precision) Answer Range + 2% A Moving to another question will save this response. tg ho 40 144
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