
A current I = 4.00 A flows in the clockwise direction along a wire forming a...
As shown in the figure, a rectangular loop with a length of 20.0 cm and a width w of 15.0 cm has 20 turns and carries a current of 0.130 A counterclockwise around the loop when viewed from the positive x axis. A horizontal (parallel to the x-z plane) magnetic field of magnitude 0.0510 T is oriented at an angle of 65.0° relative to the perpendicular to the loop (the positive x axis). (Assume the length and width are measured...
Please help with #5 and #6!! Please show work if possible,
thank you!!
Current Carrying Wires: Fields and Forces ---- ---- = 3A yo x =10 cm A long wire carrying is placed 10 cm away from the center of a loop carrying 3 A of current, clockwise as seem from above. The loop itself has a diameter of 4 cm. 1. What is the magnitude of the magnetic field, Bloop, created by the loop at its center? 2. What...
A square loop of wire carries a current I. Current is flowing in
a counterclockwise direction as shown.
16) If this loop is placed in a
uniform magnetic field pointing out the page, what is the direction
of the net force on the loop?
up
down
left
right
zero
17) Now the loop is placed near a
horizontal wire with current moving to the left. If the horizontal
wire is right below the loop (in the plane of the page), what is...
(Mark two answers) As shown below, a current flows counter-clockwise around a wire loop. The direction of the loop's magnetic dipole moment , is: A. into the page B. out of the page At the center of the wire loop the loop's magnetic field is C. into the page D. out of the page
A rectangular loop of wire is placed next to a straight wire. There is a current of 3.5A in both wires. Please find the magnitude and direction of the net force on the loop. 1) What is the direction of magnetic field produced by long wire? 2) What is the force on segment AB due to this magnetic field (magnitude and direction) 3) What is the force on segment CD due to this magnetic field (magnitude and direction) 4) What...
A 23.0 cm × 26.1 cm rectangular loop of wire carries 1.0 A of current clockwise around the loop. 23.0 cm 26.1 cm Part 1 out of 2 (a) Find the magnetic force on each side of the loop if the magnetic field is 2.0 T to the left (in the -x- direction). N in the (select) - direction top F bottom F left direction N in the (select) N in the (select) ? direction N in the (select) ?...
A single-turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.230 A. The loop is inside a solenoid, with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30.0 turns/cm and carries a clockwise current of 15.0 A. (a) Find the force on each side of the loop. magnitude µN direction Correct: Your answer is correct. (b) Find the magnitude of the torque acting on the loop....
A Long wire runs along the x-axis with a current of 3.2A, with the current in the -x direction. A circular loop of wire is placed directly on top of the wire with the loop in the x-y plane. This loops has a radius of 0.30 m with a counter-clockwise current of 0.67 A. Calculate the net magnetic field at a distance 0.21 m directly above the center of the ring (calculate in vector form).
A rectangular conducting loop is being pulled at constant speed v=4.00 m/s from a region of uniform magnetic field by a constant external force F. The dimentions of the loop are w=.3 m, l=.9 m, and has a resistance of R=5 ohms. In the region where the magnetic field is nonzero, it is directed out of the page and has magnitude of 3.00 T. External force is to the right, magnetic field is pointing out of the page, and velocity...
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