Question

Find the force in N) required to pull the loop from the magnetic field with a constant velocity of 5.5 m/s. The uniform magne
0 0
Add a comment Improve this question Transcribed image text
Answer #1

3x 3 XX R x XX XX X X X X Х 9 X X X XX X x x X Х x S Р No e.mof will induced on side RS because its not lie inside the magne

Add a comment
Know the answer?
Add Answer to:
Find the force in N) required to pull the loop from the magnetic field with a...
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
  • Find the force in N) required to pull the loop from the magnetic field with a...

    Find the force in N) required to pull the loop from the magnetic field with a constant velocity of 5.5 m/s. The uniform magnetic field is 0.75T and the resistance of the wire is 12 x x x x x X X x x x 0.350 m x x Х F X Х х х x x x x x 0.750 m 0.315 0.111 125 0499

  • Find the force (in N) required to pull the loop from the magnetic field with a...

    Find the force (in N) required to pull the loop from the magnetic field with a constant velocity of 5.5 m/s. The uniform magnetic field is 0.75 T and the resistance of the wire is 1.2 Ω. XX XX X Х x XX X 0.350 m x Х F X X X Х Х х XX x! Х x x x Х 0.750 m

  • Find the force (in N) required to pull the loop from the magnetic field with with...

    Find the force (in N) required to pull the loop from the magnetic field with with a constant velocity of 5.5 m/s. The uniform magnetic field is 0.75 T and the resistance of the wire is 1.2. A. 0.499 B. 1.25 C. 0.315 D. 0.111 We were unable to transcribe this imageWe were unable to transcribe this image

  • 3. Electromagnetic Inductance. Consider a single loop under magnetic field. (a) If the area A =...

    3. Electromagnetic Inductance. Consider a single loop under magnetic field. (a) If the area A = 0.012[m) is constant, but the magnetic field is increasing at the rate of 0.020 T/s), determine the induced emf. (Use Faraday's law; the induced emf in a loop equals the absolute value of the time rate of change of the magnetic flux through the loop.) (b) If the total resistance of the circuit is 5.0(82), find the induced current. (c) Suppose we change the...

  • 4. A square loop, side L, with resistance R sits in a uniform magnetic field as...

    4. A square loop, side L, with resistance R sits in a uniform magnetic field as shown below. The field is directed into the page and the loop initially lies in the plane of the page хх хXX X X х X X х х х х х хх хXX Find the current in the loop under the following conditions a) The loop rotates in/out of the page about any side with constant angular frequency o and the magnetic field,...

  • 8. i + -/1 points Giancoli7 21.P014 My Notes Ask Your Teacher Part of a single...

    8. i + -/1 points Giancoli7 21.P014 My Notes Ask Your Teacher Part of a single rectangular loop of wire with dimensions shown in the figure below is situated inside a region of uniform magnetic field of 0.490 T. The total resistance of the loop is 0.230%. Calculate the force required to pull the loop from the field (to the right) at a constant velocity of 3.50 m/s. Neglect gravity. ?????? 0.350m× × × × × 0.750 m

  • Part of a single rectangular loop of wire with dimensions shown in the figure (Figure 1)...

    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.

  • This next figure shows a conducting loop as we pull it with a constant force from...

    This next figure shows a conducting loop as we pull it with a constant force from a region of uniform magnetic field. Example 30.2.1 Figure 1 Assume that the field cuts off sharply along the vertical dashed line (this is, of course, very unrealistic but useful if we are going to avoid spending a long time working this problem). The speed of the loop is a constant v = 2.00 mm/s. The loop height is L = 3.00 cm, and...

  • 2T as shown. The loop is then rotated at an angular frequency of ??=2 ??????/??. (a.)...

    2T as shown. The loop is then rotated at an angular frequency of ??=2 ??????/??. (a.) What is the maximum magnetic flux of through the loop? (b.) What is the induced EMF in the loop in 150ms? (c.) If the loop has a resistance of 0.8Ω, what is the magnitude of the current that flowsthrough the loop? Part of a single rectangular loop of wire with dimensions shown is situated inside a region of uniform magnetic field of 0.550T. The...

  • induced EMIF? 5. Assume the magnetic field shown is not uniform as sketched but rather that...

    induced EMIF? 5. Assume the magnetic field shown is not uniform as sketched but rather that it depends upon the x coordinate in the following way: What is the induced ε in the loop if you pull the loop with a force F at a constant velocity v'as shown? If the loop has a resistance R, what current is flowing in the wire? You are adding mechanical energy to the system to make this loop move. However the loop is...

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