The magnetic field perpendicular to a single wire loop of diameter 10.0 cm decreases from 0.50 T to zero. The wire is made of copper and has a diameter of 2.0 mm and length 1.0 cm. How much charge moves through the wire while the field is changing?
Added by Hector C.
Step 1
0 cm Radius of the wire loop, r = 5.0 cm = 0.05 m Area of the wire loop, A = πr^2 = π(0.05)^2 = 0.00785 m^2 Show more…
Show all steps
Your feedback will help us improve your experience
Khoobchandra Agrawal and 70 other Physics 101 Mechanics educators are ready to help you.
Ask a new question
Labs
Want to see this concept in action?
Explore this concept interactively to see how it behaves as you change inputs.
Key Concepts
Recommended Videos
A 1000-turn coil of wire 2.0 cm in diameter is in a magnetic field that drops from $0.10 \mathrm{T}$ to $0 \mathrm{T}$ in $10 \mathrm{ms}$. The axis of the $\mathrm{coil}$ is parallel to the field. What is the emf of the coil?
The magnetic field, perpendicular to a single circular copper wire loop with a diameter of 13.2 cm, decreases uniformly from 0.67 T to zero. If the copper wire loop has a total resistance of 1.75 mΩ, how much electric charge (in Coulombs) moves past any point in the coil during this operation?
Maitreya E.
Recommended Textbooks
University Physics with Modern Physics
Physics: Principles with Applications
Fundamentals of Physics
Transcript
Watch the video solution with this free unlock.
EMAIL
PASSWORD