A rectangular loop of wire carries 4 A current and lies in a plane that also contains a very long straight wire carrying 13 A current as shown in the figure. Determine the net force on the loop due to the current fowing through the straight wire. The arrows in the figure show the direction of each current. The permeability of the free space is 4xx 10-7m/A. Give your answer in units of N (micro newton), Take the direction to the right and to the up as positive for x and y coordinates. 50 cm Round your answer to 1 decimal place. Add your answer 70 cm 26 cm
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- Two wires are located at the distance d=4m as shown in the diagram. y d/2 #1 #2 d/2 A d/2 d/2 B Wire #1 carries a current of 4 A in the shown direction. Wire #2 carries a current of 2 A in the shown direction. Hol Units: Tesla (T) B = 2nr' Ho=47tx10-7 T*m/A 1. Find the magnitude and direction of total magnetic field at point A, located exactly in the middle between two wires. 2. Find the magnitude and direction of total magnetic field at point B, located at the distance d/2 to the right of wire #2 as shown in diagram. 3. Find the magnitude of total magnetic field at point C, located at the distance d/2 above the point A as shown in diagram. 4. Find the direction (angle related to positive +x axis) of total magnetic field at point C, located at the distance d/2 above the point A as shown in diagram.Don't use chat gpt It Chatgpt means downvoteTwo 44 meter long parallel wires experience an attractive force of 0.0006 N. If they are 0.42 m apart and I1=10A, find the current in the other wire.
- Force between Parallel Wires You have two wires with current running through them (see image below). The wires are a distance d apart. Current 1 = 3.25 A Current 2 = 2.85 A d = 0.370 m What is the force per length between the wires? Put your answer in μΝ microNewtons/m (· :). m If the force per length is repulsive, put in a negative sign. If the force per length is attractive, leave your answer positive. Your Answer: Answer Wire 1 Current 1 Wire 2 Current 2The figure below is a cross-sectional view of a coaxial cable. The center conductor is surrounded by a rubber layer, an outer conductor, and another rubber layer. In a particular application, the current in the inner conductor is I, = 1.16 A out of the page and the current in the outer conductor is I, = 2.82 A into the page. Assuming the distance d = 1.00 mm, answer the following. 12 d d (a) Determine the magnitude and direction of the magnetic field at point a. magnitude UT direction ---Select--- (b) Determine the magnitude and direction of the magnetic field at point b. magnitudel UT direction --Select---parallel current bearing wires shown in the figure below; each wire carries a 3.00 Ampere current, and the wires are 0.150 meters apart. In the leftmost configuration (panel a), the currents are in the same direction. In the rightmost configuration (panel b), the currents are in the opposite direction. On the figure sketch the forces on the wires for both sets of wires, showing the direction of the force for each wire. . I (a) (b) Current configurations for #3 b. What is the magnitude of the force per unit length for panels (a) and (b)? c. What is the magnitude of the force per unit length among the wires if the distance between them is doubled?
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