Question

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
zout of paged-- х R:1 Ω Direction of rotation A coil consisting of two square loops, connected in series, rotates at f 60 rev
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 positive z-direction extends from y-0 to y-60 cm as indicated in the figure. At time t-0 the leading edge of the loop enters the magnetic field region 9. From t-0 to t-0.03 sec a counter clockwise current flows in the circuit. a. True b. False 10. What is the mechanical power that must be supplied to move the loop during the time interval 0ctc0.03 sec? a. 5.0 W b. 10.0 W c. 20.0 W d. 40.0 W e. 100.0 W 11. Between t 0.06 and . Between t-0.06 and 0.09 sec the loop leaves the field regi following statements is true? A negative amount of work is done pulling the loop out of th time interval a. the field region as pulling it op were palled through at a faster speed. b. The same amount of work is done pulling the loop out of into the field region c. Less work would be done if the loop 5 of 13 nau
zout of paged-- х R:1 Ω Direction of rotation A coil consisting of two square loops, connected in series, rotates at f 60 revolutions per second, that is o 2T 60 radians/sec. It does so around the y-axis and through a magnetic field of 1 Tesla pointing in the positive z-direction. A snapshot of the rotating coil at time t=0 is shown in the figure. At tine t-o the plane of the coil is in the x-y plane. The loops are 10 cm by 10 cm in dimension and have no resistance of their own. A 1 Ω resistor is connected across the coils as shown. 12. At time t-0 (shown in the figure) a. the current in the loops is flowing clockwise. b. the current in the loop is flowing counter clockwise. c. the current is zero. 13. The maximum value of the current flowing in the loop is a. 1.20 Amp b. 3.77 Amp c. 7.54 Amp d. 56.85 Amp e. 113.70 Amp 14. If the magnetic field were doubled, the power dissipated in the resistor would be forur times as before. a. True b. False 6 of 13 nages
0 0
Add a comment Improve this question Transcribed image text
Answer #1

AH S falie 七 1刃 B es doubl

Add a comment
Know the answer?
Add Answer to:
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 car...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A square loop of wire with side length 10 cm is moving to the right with...

    A square loop of wire with side length 10 cm is moving to the right with constant speed of 16 m/s. The loop has total resistance of 0.8 ohms. It begins in a region with no magnetic field, then enters a region of magnetic field (wider than 10 cm) with a strength of 0.5 T pointing into the page. Finally it leaves the field. 21)  While entering the field what is the direction of the induced current as seen from above...

  • 4. (20 pts) A 2m x Im rectangular loop contains a 10 Ω resistor and is...

    4. (20 pts) A 2m x Im rectangular loop contains a 10 Ω resistor and is moving at 2 m/s towards a region of uniform magnetic fields 10 T into the page and of width 4 m. Assume the rectangular loop begins to enter the 4 m wide region o uniform magnetic field at t-0. Plot the current versus time in the 10Ωresistor from t = 0 to t = 3 s. Assume the current is positive if flowing in...

  • A rectangular loop of wire with dimensions 2.43 cm by 8.38 cm and resistance 0.593 Ω

    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...

  • At t = 0, a rectangular coil of resistance R = 2 Ω and dimensions W...

    At t = 0, a rectangular coil of resistance R = 2 Ω and dimensions W = 3 cm and L = 8 cm enters a region of constant magnetic field B = 1.6 T directed into the screen as shown. The length of the region containing the magnetic field is LB = 15 cm. The coil is observed to move at constant velocity v = 5 cm/s. What is the force required at time t = 0.8 sec to...

  • A circular loop of radius 5.0 cm and resistance 0.4 Ω lays in the horizontal XY...

    A circular loop of radius 5.0 cm and resistance 0.4 Ω lays in the horizontal XY plane. A uniform magnetic field is established pointing upwards, that's to say, in the direction of the positive Z axis. At t = 0, the magnitude of the magnetic field is 120 mT, but then it is increasing at a rate of 40 mT/s. Find the induced current in the loop at t = 1 s, and discuss whether its direction is clockwise or...

  • A rectangular loop of wire with dimensions 1.80 cm by 7.00 cm and resistance 0.800 Ω...

    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 square loop of wire with side length 10 cm is moving to the right with...

    A square loop of wire with side length 10 cm is moving to the right with constant speed of 16 m/s. The loop has total resistance of .8 ohms. It begins in a region with no magnetic field, then enters a region of magnetic field (wider than 10 cm) with a strength of .5 T pointing out of the page. a) while entering the field what is the direction of the induced current as seen from above the plane of...

  • 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

    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 wire loop with sides of length w =1.6 m and h = 0.50 m...

    A rectangular wire loop with sides of length w =1.6 m and h = 0.50 m and net resistance R lies in the xy-plane. It is placed in a region which is occupied by a spatially-uniform but time-varying magnetic field B = B_0[1 - [t^2/t_0^2]] k where B_) = 0.70 T and t_0 = 3.0 s. A graph of the B-field's t-dependence is given below. What is the direction of the current induced around the wire loop at time t...

  • A circular loop of wire with radius 0.0270 m and resistance 0.320 Ω

    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...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT