Question

Suppose a straight 1.15 mm -diameter copper wire could just Toat horizontally in air because of the force due to the Earth

0 0
Add a comment Improve this question Transcribed image text
Answer #1

may TEZZZZZZZZA Here, Emag-ngs I lb . voc. G. g. I. I TOR? ex8x9. Схв (1152x8960 x 9.8 4x 65 x 10-5 1000 I. 5612.628305 Amper

Add a comment
Know the answer?
Add Answer to:
Suppose a straight 1.15 mm -diameter copper wire could just "Toat" horizontally in air because of...
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
  • Constants Suppose a straight 1.15 mm-diameter copper wire could just "float" horizontally in air because of...

    Constants Suppose a straight 1.15 mm-diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B, which is horizontal, perpendicular to the wire, and of magnitude 3.1 10-5T

  • Suppose a straight 1.55 mm -diameter copper wire could just "float" horizontally in air because of...

    Suppose a straight 1.55 mm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B⃗ , which is horizontal, perpendicular to the wire, and of magnitude 4.4×10−5 What current would the wire carry? Does the answer seem feasible?

  • Suppose a straight 1.25 mm -diameter copper wire could just "float" horizontally in air because of...

    Suppose a straight 1.25 mm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B⃗ , which is horizontal, perpendicular to the wire, and of magnitude 6.4×10−5 T . Part A What current would the wire carry? Express your answer using two significant figures. Part B Does the answer seem feasible? Does the answer seem feasible? yes no

  • Suppose a straight 1.65 mm -diameter copper wire could just "float" horizontally in air because of...

    Suppose a straight 1.65 mm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B⃗ , which is horizontal, perpendicular to the wire, and of magnitude 4.5×10−5 T . A) What current would the wire carry? Express your answer using two significant figures. B) Explain briefly. Essay answers are limited to about 500 words (3800 characters maximum, including spaces).

  • a) Suppose a straight 1.40 mm -diameter copper wire could just "float" horizontally in air because...

    a) Suppose a straight 1.40 mm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B⃗, which is horizontal, perpendicular to the wire, and of magnitude 3.4×10−5 T . What current would the wire carry? Does the answer seem feasible? Explain why. b) The force on a wire carrying 7.95 A is a maximum of 2.13 N when placed between the pole faces of a magnet If the pole faces...

  • Suppose a straight 1.40 mmmm -diameter copper wire could just "float" horizontally in air because of...

    Suppose a straight 1.40 mmmm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B which is horizontal, perpendicular to the wire, and of magnitude 4.8×10−5 T. Part A) What current would the wire carry? Part B) Does the answer seem feasible? (Yes or No)

  • Physics Problem

    Suppose a straight 1.50 mmmm -diameter copper wire could just "float" horizontally in air because of the force due to the Earth's magnetic field B⃗ B→, which is horizontal, perpendicular to the wire, and of magnitude 4.1×10−5 TT . Find the current the wire would carry.

  • Consider a straight piece of copper wire of length 8 m and diameter 8 mm that...

    Consider a straight piece of copper wire of length 8 m and diameter 8 mm that carries a current I = 4.5 A. There is a magnetic field of magnitude B directed perpendicular to the wire, and the magnetic force on the wire is just strong enough to “levitate” the wire (i.e., the magnetic force on the wire is equal to its weight). Find B. Hint: The density of copper is 9000 kg/m3 .

  • In (Figure 1) the top wire is 1.80-mm-diameter copper wire and is suspended in air due...

    In (Figure 1) the top wire is 1.80-mm-diameter copper wire and is suspended in air due to the two magnetic forces from the bottom two wires. The current flow through the two bottom wires is 81 A in each. Part A Calculate the required current flow in the suspended wire (M). Express your answer to two significant figures and include the appropriate units. μΑ 1.12 ]] ? Icu = Value Units Figure 1 of 1 Submit Request Answer M <...

  • A 14.0 gauge copper wire of diameter 1.628 mm carries a current of 15.0 mA Part...

    A 14.0 gauge copper wire of diameter 1.628 mm carries a current of 15.0 mA Part A What is the potential difference across a 2.25 m length of the wire? EVO AED ? V Submit Request Answer Part B What would the potential difference in part A be if the wire were silver instead of copper, but all else was the same? IVO AED h ? V Submit Request Answer

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