4. (20 pts) A 2m x Im rectangular loop contains a 10 Ω resistor and is...
y-0 cm y 60 cm 30 cm B 10 T 10 Ω 10 cm. . v 10 m/s z out of page y A rectangular wire loop is carried in the y-direction at a constant speed of 10 m/s. The loop has a total loop resistance of 10 Ω and is lying in the x-y plane. It is 30 cm long and 10 cm wide. A region of constant and uniform magnetic field of magnitude 10 T pointing in the...
Please show work and explain.
10. A single turn of a rectangular loop (length 8.00 m, height 6.00 m, resistance 0.150 (2) is traveling to the right at a constant speed of 0.500 m/s. The loop travels across a 3.00-m-wide zone of uniform magnetic field of 0.450T directed out of the page. Assume that the loop begins to enter the zone at time t-0.00 s (a) (10 pts) Determine the induced current at time 3.00 s. (Specify both magnitude &...
A rectangular loop of wire (width w = 0.05 meters , length L = 0.1m) is traveling with a speed of v = 2 m/s as it enters a region with a uniform magnetic field which is directed out of the page (See the drawing below.) The magnetic field has a constant value of 0.5 Tesla. (a) How long does it take the loop to completely enter the region with the magnetic field (5 pt)? (b) What is the change...
A rectangular loop of wire with dimensions 2.43 cm by 8.38 cm and resistance 0.593 Ω is being pulled to the right out of a region of uniform magnetic field. The magnetic field has magnitude 3.01 T and is directed into the plane of the following figure(Figure 1). Part A At the instant when the speed of the loop is 3.09 m/s and it is still partially in the field region, what is the magnitude of the force the magnetic field exert...
A circular loop of wire with radius 0.0270 m and resistance 0.320 Ω is in a region of spatially uniform magnetic field, as shown in the following figure(Figure 1). The magnetic field is directed into the plane of the figure. At t = 0, B = 0. The magnetic field then begins increasing, with B(t) =( 0.400 T/s3)t3 .Part A What is the current in the loop (magnitude) at the instant when B = 1.38 T? Part B What is the direction of the...
A rectangular loop of wire with dimensions 1.80 cm by 7.00 cm
and resistance 0.800 Ω is being pulled to the right out of a region
of uniform magnetic field. The magnetic field has magnitude 2.60 T
and is directed into the plane of (figure 1).
A) At the instant when the speed of the loop is 3.00 m/s and it
is still partially in the field region, what is the magnitude of
the force that the magnetic field exerts...
A rectangular loop of wire with dimensions 2.12 cm by 8 50 cm and resistance 0.576 Ω is being pulled to the right out of a region of uniform magnetic field. The magnetic field has magnitude 3.27 T and is directed into the plane of the following figure(Figure 1) Part A At the instant when the speed of the loop is 3.00 m/s and it is still partially in the field region, what is the magnitude of the force the magnetic field...
A rectangular coil that has a
length of 18.5 cm and a width of 9.0 cm containing 14 loops lies
flat on your desk as shown on this page. A uniform magnetic field
of magnitude 5.10 × 10 − 5 T points towards the left of this page.
If a 8.00-A clockwise current flows through the coil, (a) determine
the torque on the coil.
4. A rectangular coil that has a length of 18.5 cm and a width of 9.0...
Part of a single rectangular loop of wire with dimensions shown in the (Figure 1) is situated inside a region of uniform magnetic field of 0.740 T . The total resistance of the loop is 0.780 Ω . Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 5.20 m/s . Neglect gravity.
Part of a single rectangular loop of wire with dimensions shown in the figure (Figure 1) is situated inside a region of uniform magnetic field of 0.336 T . The total resistance of the loop is 0.532 Ω . Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 1.59 m/s . Neglect gravity.