Two long straight wires carrying equal currents of 35.0 A in opposite directions are placed at the corners of an equilateral triangle as shown in the figure below. The distance d of each side of the triangle is 6.00 cm. P. d. 60° 12 60° P a. Draw the individual magnetic field vectors produced by I and I2 at point P. Draw the net magnetic field vector at P. h Calculate the net magnetic field (magnitude and direction) at point P. OL much forre (manitude and direction) does a 2.50 m section of th

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Chapter1: Units, Trigonometry. And Vectors
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Two long straight wires carrying equal currents of 35.0 A in opposite directions are placed at the corners of an equilateral triangle as shown in the figure below. The distance
d of each side of the triangle is 6.00 cm.
P.
d.
60° O 12
60°
11
d.
b. Calculate the net magnetic field (magnitude and direction) at point P.
c. If a third long parallel wire carrying current I3 of 2.50 A into the screen is placed at point P, how much force (magnitude and direction) does a 2.50 m section of the
wire experience?
a. Draw the individual magnetic field vectors produced by I1 and I2 at point P. Draw the net magnetic field vector at P.
Transcribed Image Text:Two long straight wires carrying equal currents of 35.0 A in opposite directions are placed at the corners of an equilateral triangle as shown in the figure below. The distance d of each side of the triangle is 6.00 cm. P. d. 60° O 12 60° 11 d. b. Calculate the net magnetic field (magnitude and direction) at point P. c. If a third long parallel wire carrying current I3 of 2.50 A into the screen is placed at point P, how much force (magnitude and direction) does a 2.50 m section of the wire experience? a. Draw the individual magnetic field vectors produced by I1 and I2 at point P. Draw the net magnetic field vector at P.
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