Consider the two current-carrying wires in the figure. On the left is a long, straight wire carrying current I. In the same plane, there is a rectangular loop, which carries a current I2. The dimensions of the rectangular loop are shown in the figure, and the left side of the loop is a distance c from the wire. What are the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire? (Use any variable or symbol stated above along with the following as necessary: Ho, l, and a.) magnitude F= direction -Select---
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- Three long, straight wires are seen end-on in the figure below. The distance between the wires is r= 0.254 m. Wires A and B carry current IA = IB = 1.78 A, and wire C carries current Ic = 3.30 A. %3D Assume (for example) the only forces exerted on wire A are due to wires B and C. Find the force per unit length exerted on the following. (Express your answers in vector form.) A IA IB Ic C B (a) wire A N/m %3D (b) wire B fB N/mShown below is a cross-sectional view of two long straight wires that are parallel to each other. One wire carries a current I1 = 5 A into the page, the other carries a current I2 = 12 A out of the page. The side length of a square is 0.1 cm. a) On the figure provided, draw the magnetic field vector created by each current at point A (the corner of the right angle triangle shown). b) Using the parallelogram or triangle method, draw the resultant (net) magnetic field at point A.PROBLEM 1. As shown in the figure, a uniform magnetic field B points upward, in the plane of the paper. Then the current is turned on in a long wire perpendicular to the paper. The magnetic field at point 1 is then found to be zero. From this information, draw the magnetic field vector at point 2 when the current is on. Draw the vector starting at the black dot. The location and orientation of the vector will be graded. The length of the vector will not be graded. Explain your reasoning. 2• H Wire 1.
- Consider two current-carrying wires, separated by a distance d = 19 cm, as shown in the figure. The left wire carries current I1 directed out of the page, and the right wire carries current I2 directed into the page. The point P is a distance d from both wires, so the wires and the point form an equilateral triangle. If both wires are carrying a current of 9.5 A, what are the magnitude and direction of the magnetic field at point P expressed in tesla and using unit vectors i and j ? (-10-5 i + 10-5 j )T 10-5 j T 2.5*10-5 j T (10-5 i + 10-5 j )T None aboveIn the figure below, point P is at a perpendicular distance a = 13 cm from one end of a straight wire of length L = 15 cm carrying current I = 6 A. (Note that the wire is not long, or infinite.) What are the magnitude and direction of the magnetic field at P? For direction, you can say into or out of the page.A conductive wire is arranged on the surface of the cube whose sides are 40 cm as shown. The wire is in the same magnetic field B = 0.02 T j. If the conductor is energized by an electric current I = 4 A in the direction shown in the picture, determine the vector of the magnetic force experienced by each piece of wire.
- Three long, straight wires are seen end-on in the figure below. The distance between the wires is r = 0.246 m. Wires A and B carry current Iд = IB = 1.60 A, and wire C carries current Ic = 3.46 A. Assume (for example) the only forces exerted on wire A are due to wires B and C. Find the force per unit length exerted on the following. (Express your answers in vector form.) (a) wire A A = = B (b) wire B = A N/m N/m Ic y xIn the figure below, the current in the long, straight wire is I₁ = 6.10 A, and the wire lies in the plane of the rectangular loop, which carries 14.2 A. The dimensions shown are c = 0.100 m, a = 0.150 m, and l = 0.450 m. Find the magnitude and direction of the net force exerted by the magnetic field due to the straight wire on the loop. N magnitude direction to the right ←c- X I₂ OThe infinite, straight wire shown in the figure below carries a current I1 = 2 A. The rectangular loop, whose long sides are parallel to the wire, carries a current I2 = 4 A. All parts of the loop and wire are in the same plane. What is the force on the rectangular loop due to the magnetic field of the wire if a = 0.03 m and b = 0.02 m? (you must also find the direction)
- Can someone help ASAPIn the figure below, the current in the long, straight wire is I1 = 5.00 A, and the wire lies in the plane of the rectangular loop, which carries 10.2 A. The dimensions shown are c = 0.100 m, a = 0.150 m, and script l = 0.450 m. Find the magnitude and direction of the net force exerted by the magnetic field due to the straight loop.In the figure below, the current in the long, straight wire is I, = 7.00 A and the wire lies in the plane of the rectangular loop, which carries a current I, = 10.0 A. The dimensions in the figure are c = 0.100 m a = 0.150 m, and { = 0.490 m. Find the magnitude and direction of the net force exerted on the loop by the magnetic field created by the wire. magnitude direction --Select--