Suppose in the figure that the four identical currents i = 24 A, into or out of the page as shown, form a square of side 134 cm. What is the force per unit length (magnitude and direction) on the wire in the bottom left hand corner? (N/m) Take the positive y direction as up and the positive x direction as to the right. (Figure Included Here)
What is the magnitude of the force per unit length?
What is the x component of the force per unit length?
What is the y component of the force per unit length?
Suppose in the figure that the four identical currents i = 24 A, into or out...
(8c29p36) Suppose in the figure that the four identical currents i = 6 A, into or out of the page as shown, form a square of side 76 cm, what is the force per unit length (magnitude and direction) on the wire in the bottom left hand corner? (N/m) Take the positive y direction as up and the positive x direction as to the right. What is the magnitude of the force per unit length? Submit Answer Tries o/99 What...
(8c29p36) Suppose in the figure that the four identical currents i = 9 A, into or out of the page as shown, form a square of side 102 cm. What is the force per unit length (magnitude and direction) on the wire in the bottom left hand corner? (N/m) Take the positive y direction as up and the positive x direction as to the right. What is the magnitude of the force per unit length? .000016N/m Check the units for...
5. Consider the following diagram. lo lo lo Io Front view 3-d view Four long wires are arranged in a square geometry. The two wires on the left hand side of the box are carrying a current lo out of the page (the bottom left wire) and into the page (the top left wire). The side of each box has a length of A. What is the magnetic field (magnitude and direction) along the center of the box? a. b....
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Problem7 Three very long wires with currents is I, and ly are placed on the corners of a square with side length d; a fourth very long wire with current Is is placed at the center of the square (see diagram). The wires with the currents ,and l are held fixed, while the wire with the current lo can move.e Assume that l and l are coming out of the page and both have the...
The two wires shown in the figure below carry currents of I = 5.69 A in opposite directions and are separated by d0 = 9.55 cm. (Figure Included Here) Calculate the net magnetic field at a point midway between the wires. Use the direction into the page as the positive direction and out of the page as the negative direction. Calculate the net magnetic field at point P1 - that is, d1 = 8.25 cm to the right of the...
1. Shown are four current carrying outer wires have currents either com four current carrying wires each with the same magnitude of the current. The lave currents either coming out of the page or going into the page as shown 3 a square. What is the direction of the net magnetic field on the upper left wire? b. d. e. No net field Shown are four current carrying wires of length 1.50 m going into and out of the page,...
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Four long, parallel conductors carry equal currents of I = 6.70 A. The figure below is an end view of the conductors. The current direction is into the page at points A and B and out of the page at C and D. А С BX D (a) Calculate the magnitude of the magnetic field at point P, located at the center of the square of edge length ( = 0.200 m. (b) Determine the...
Chapter 29, Problem 040 In the figure, four long straight wires are perpendicular to the page, and their cross sections form a square of edge length a = 6.87 cm. Each wire carries 11.7 A, and all the currents are out of the page. What is the magnitude of the net magnetic force per unit length on wire 1? 9 Number Units the tolerance is +/-5%
Four long, parallel conductors carry equal currents of I- 2.00 A. The figure below is an end view of the conductors. The current direction is into the page at points A and B and out of the page at C and (a) Calculate the magnitude of the magnetic field at point P, located at the center of the square of edge length 0.200 m n. HT (b) Determine the direction of the magnetic field at point P, located at the...