A 44.0 mA current is carried by a uniformly wound air-core solenoid with 480 turns, a 11.0 mm diameter, and 10.0 cm length. (a) Compute the magnetic field inside the solenoid. 265 (b) Compute the magnetic flux through each turn. 2.52e-8 v T-m2 (c) Compute the inductance of the solenoid. 5.8e-4 Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. mH
A 44.0 mA current is carried by a uniformly wound air-core solenoid with 480 turns, a 11.0 mm diameter, and 10.0 cm length. (a) Compute the magnetic field inside the solenoid. 265 (b) Compute the magnetic flux through each turn. 2.52e-8 v T-m2 (c) Compute the inductance of the solenoid. 5.8e-4 Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. mH
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![### Electromagnetism - Solenoids
A **44.0 mA** current is carried by a uniformly wound air-core solenoid with **480 turns**, a **11.0 mm diameter**, and **10.0 cm length**.
#### (a) Compute the magnetic field inside the solenoid.
**Given Answer:** 265 µT
#### (b) Compute the magnetic flux through each turn.
**Given Answer:** 2.52e-8 T·m²
#### (c) Compute the inductance of the solenoid.
**Given Answer:** 5.8e-4 mH
**Note:** Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully.
#### (d) Which of these quantities depends on the current? (Select all that apply.)
- [x] Magnetic field inside the solenoid
- [x] Magnetic flux through each turn
- [ ] Inductance of the solenoid](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3d3b999f-40bc-4397-b918-1b796d12487f%2Ff53dcc85-7ef1-43f2-9bb3-e9a035527058%2F021r4d7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:### Electromagnetism - Solenoids
A **44.0 mA** current is carried by a uniformly wound air-core solenoid with **480 turns**, a **11.0 mm diameter**, and **10.0 cm length**.
#### (a) Compute the magnetic field inside the solenoid.
**Given Answer:** 265 µT
#### (b) Compute the magnetic flux through each turn.
**Given Answer:** 2.52e-8 T·m²
#### (c) Compute the inductance of the solenoid.
**Given Answer:** 5.8e-4 mH
**Note:** Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully.
#### (d) Which of these quantities depends on the current? (Select all that apply.)
- [x] Magnetic field inside the solenoid
- [x] Magnetic flux through each turn
- [ ] Inductance of the solenoid
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