Two long, parallel wires are separated by 1.8 m. Each wire has a 32-A current, but the currents are in opposite directions.
A)Determine the magnitude of the net magnetic field midway between the wires.
B)Determine the magnitude of the net magnetic field at a point 0.9 m to the side of one wire and 2.7 m from the other wire. The point is in the same plane as the wires.
Two long, parallel wires are separated by 1.8 m. Each wire has a 32-A current, but...
Two long, parallel wires are separated by 2.0 m . Each wire has a 25-A current, but the currents are in opposite directions . a) Determine the magnitude of the net magnetic field midway between the wires. b) Determine the magnitude of the net magnetic field at a point 1 m to the side of one wire and 3.0 m from the other wire. The point is in the same plane as the wires.
Two long parallel wires are side by side – separated by 5 mm. Each wire carries 50. amps in the same direction. Calculate the magnetic field magnitude each wire induces at the location of the other wire. What is the force on each wire (magnitude and direction) per unit meter of length? How would this change if the currents were flowing in opposite directions?
Two long parallel wires carry currents of 20 A and 5.0 A in opposite directions. The wires are separated by 0.20 m. What is the magnitude of the magnetic field midway between the two wires in units of 10-5T?
Two long parallel wires carry currents of 20 A and 5.0 A in opposite directions. The wires are separated by 0.20 m. What is the magnitude of the magnetic field midway between the two wires in units of 10-5T?
Two long, straight, parallel wires separated by a distance d carry currents in opposite directions as shown in the figure. The bottom wire carries a current of 6.0 A. Point C is at the midpoint between the wires and point O is a distance 0.50d below the 6-A wire as suggested in the figure. The total magnetic field at point O is zero tesla. a. Determine the value of the current, I, in the top wire. Determine the magnitude of...
Two long parallel wires separated by 0.2 m carry equal currents of 1.5 A in the same direction. Find the magnitude of the magnetic field 0.15 m away from each wire on the side opposite the other wire. 0.20 m I= 1.5A I=1.5A B=? B-? 0.15 m 0.15 m
2 long parallel wires (in the plane of the page) each 1.0 m long, separated by 2.0 cm, each carry currents of 1.0 A from bottom towards the top of the page. (a) Calculate the magnetic field at the point P midway between the wires in the plane of the page. And (b) Calculate the magnetic field at the point Q 1.0 cm from the right of the wire 2. The point Q is in the plane of the page.
2. Two long straight parallel wires separated by a distance of 20 cm carry currents of 30 A and 40 A in opposite directions. What is the magnitude of the resulting magnetic field at a point that is 15 cm from the wire carrying the 30 A current and 25 cm from the other wire?
Two parallel wires (each 12 m in length) are separated by a distance of 0.065 m and carry currents of 15 A and 7.0 A, respectively. Calculate the magnetic field for each wire at the distance 0.065 m. Show that if the wires carry current in the same direction that the wires are attracted to each other and if the wires carry current in opposite directions that the wires are repelled from each other.
Two long, parallel wires are separated by a distance of , = 4 cm, as shown in the figure. The wires carry currents I, = 5 A and I, = 2 A in opposite directions. Р1 Р2 (a) Find the direction and magnitude (in T) of the net magnetic field at point P,, which is a distance , = 5 cm to the left of the wire carrying current I. direction -Select- magnitude T Enter a number. (b) Find the...