Two straight wires positioned at right angles to each other (one in the horizontal plane and the other in the vertical plane) each carry a current of 15 A and separated by a distance of 20.0 cm. What should be the direction of current in each wire so that net force on each wire is ZERO?
Please explain in detail with diagram and formula
Two straight wires positioned at right angles to each other (one in the horizontal plane and...
Two straight wires positioned at right angles to each other (one in the horizontal plane and the other in the vertical plane) each carry a current of 15 A and separated by a distance of 20.0 cm. What should be the direction of current in each wire so that net force on each wire is ZERO?
Four parallel wires that are long and straight are positioned as shown. Two of the wires carry currents that are directed outward, and two of the wires carry currents that are directed inward. All four currents have equal magnitude. Which one of the following phrases best describes the direction of the net magnetic force acting on the wire shown at the top? vertically upward vertically downward outward O inward The net force on the wire could be zero newtons
Two long, straight wires cross each other at right angles, as shown in the figure below. 8.00 A4 $0.0 cm P 40.6 cm 5.00 A (a) Find the direction and magnitude of the magnetic field at point P, which is in the same plane as the two wires. Magnitude T Direction --Select- v (b) Find the magnetic field at a point 29.0 cm above the point of intersection (29.0 cm out of ttle page, toward you). Magnitude T Direction -Select-
2. Two wires are running parallel with respect to each other in space from south to north, and are separated by a distance of 10 cm. They both carry currents from south to north. The wire on the left (wire 1) carries a current of 11 =10 A, and the wire on the right (wire 2) carries a current of I2 =20 A. Answer the following: (6 marks total) a. Find the direction and magnitude of the force acting on...
. Two current carrying wires are positioned paraflel against eachother,asshown.The darker wire is carrying current 11- 15 A, The ighter colored wire carries an unknown current /2 Each are 6 m long and are separated by a distance d At point A, which is a distance Lo14 cm from the lighter colored +- 2 wire, the magnetic field is zero. Find a) Current la b) The force one wire is exerting on the other, magnitude and direction. (26 points)
Two infinitely long, straight wires are parallel and separated by a distance of one meter. They carry currents in the same direction. Wire 1 carries 6 times the current as wire 2 does. Determine the perpendicular distance from wire 1 to a point where the net magnetic field is zero between the two wires.
2)Two long, straight wires are at 20.0 cm distance from each other, as shown in the figure. The current in the wire on the left 11-15.0 A, s going upward and the current in the wire on the right 25.0 A, is going downward. l-15.0 A l-25.0 A Find the magnitude and show the direction of the magnetic field Bi due to Ii at point P at 5 cm on the right side the current I. 6 points a) b)...
Long straight wire carries current to the right of the page. A rectangular loop is positioned directly under the wire in the plane of the page and carries current in clockwise direction. The net force exerted by this loop on the straight wire with current is directed a. towards the loop b. away from the loop c. to the right of the page d. to the left of the page e. is zero
4. Shown at right is a cross-sectional view of two long, straight wires at are parallel to each other, placed near point P. One wire carries a current i, into the page; the other wire is twice as far away from P and carries a current 2i, out of the page. 2i (Hint: The magnetic field from a current-carrying wire is proportional to the current through the wire and inversely proportional to the distance away from the wire.) Draw and...
Two infinitely long, straight wires are parallel and separated by a distance of one meter. They carry currents in the same direction. Wire 1 carries 6 times thecurrent as wire 2 does. Determine the perpendicular distance from wire 1 to a point where the net magnetic field is zero between the two wires.