Find the magnitude (in T) and direction (in degrees counterclockwise from the +x-axis) of the magnetic field at the point equidistant from the wires in the figure below, where x = 14.5 cm, I₁ = 3.50 A, I₂ = 7.00 A, and I3 = 14.0 A. 1-X Use the rules of vector addition to sum the contributions from each wire. (Assume that the +x-axis is to the right and the +y-axis is up along the page.) X T magnitude direction 234 counterclockwise from the +Y-avis

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Find the magnitude (in T) and direction (in degrees counterclockwise from the +x-axis) of the magnetic field at the point
equidistant from the wires in the figure below, where x = 14.5 cm, I₁ = 3.50 A, 12 = 7.00 A, and I3 = 14.0 A.
4₂₁
1₂
magnitude
direction
Use the rules of vector addition to sum the contributions from each wire. (Assume that the +x-axis is to the right and the
+y-axis is up along the page.).
23.4
13
X T
• counterclockwise from the +x-axis
Transcribed Image Text:Find the magnitude (in T) and direction (in degrees counterclockwise from the +x-axis) of the magnetic field at the point equidistant from the wires in the figure below, where x = 14.5 cm, I₁ = 3.50 A, 12 = 7.00 A, and I3 = 14.0 A. 4₂₁ 1₂ magnitude direction Use the rules of vector addition to sum the contributions from each wire. (Assume that the +x-axis is to the right and the +y-axis is up along the page.). 23.4 13 X T • counterclockwise from the +x-axis
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