Consider the two charges in the figure, which are moving in opposite directions and located a distance 16 cm on either side of the origin of the given coordinate system. Charge one is 19.5 µC and is moving at a speed 13.5 × 106 m/s, and charge two is -9.5 µC and 02 is moving at a speed of 1.5 × 106 m/s. Notice that the positive z- direction in this figure is directed out of the page. 92 d Q d What is the total magnetic field, in the z-direction, at a point Q located a distance 31 cm down the x-axis, as shown? Your answer should be in teslas.

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Chapter1: Units, Trigonometry. And Vectors
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Consider the two charges in the figure, which are
Y
moving in opposite directions and located a distance 16 cm on either
side of the origin of the given coordinate system. Charge one is 19.5 µC
and is moving at a speed 13.5 × 106 m/s, and charge two is -9.5 µC and 02
is moving at a speed of 1.5 × 106 m/s. Notice that the positive z-
direction in this figure is directed out of the page.
92
d
Q
d
What is the total magnetic field, in the z-direction, at a point O located a distance 31 cm down the x-axis, as shown? Your answer should be in teslas.
Bz =
Transcribed Image Text:Consider the two charges in the figure, which are Y moving in opposite directions and located a distance 16 cm on either side of the origin of the given coordinate system. Charge one is 19.5 µC and is moving at a speed 13.5 × 106 m/s, and charge two is -9.5 µC and 02 is moving at a speed of 1.5 × 106 m/s. Notice that the positive z- direction in this figure is directed out of the page. 92 d Q d What is the total magnetic field, in the z-direction, at a point O located a distance 31 cm down the x-axis, as shown? Your answer should be in teslas. Bz =
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