▼ Part A Within the solenoid, but far from its ends, what is the magnetic field B due to the current I? Express your answer in terms of some or all of the following variables I, n, Z and any relevant constants (such as 40). B= Submit Part B $1 What is the magnetic flux ₁ through a single turn of the solenoid? Express your answer in terms of the magnetic field B, quantities given in the introduction, and any needed constants. = Submit Part C ε = ID ΑΣΦ Request Answer [Γ] ΑΣΦ Submit Request Answer Suppose that the current varies with time, so that AI/At = 0. Find the total electromotive force & induced in the solenoid due to this change in current. Express your answer in terms of AI/At, n, Z, and R. ► View Available Hint(s) [ΠΑΣΦ '? ← TE '? '?

University Physics Volume 2
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Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 110CP: A circular loop of wire of area 10 cm2 carries a current of 25 A. At a particular instant, the loop...
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Part A
Within the solenoid, but far from its ends, what is the magnetic field B due to the current I?
Express your answer in terms of some or all of the following variables I, n, Z and any relevant constants (such as μ).
B =
Submit
Part B
$₁ =
Submit
What is the magnetic flux ₁ through a single turn of the solenoid?
Express your answer in terms of the magnetic field B, quantities given in the introduction, and any needed constants.
ID ΑΣΦ
Part C
E =
Submit
ID ΑΣΦ
Part D
Request Answer
Suppose that the current varies with time, so that AI/At 0. Find the total electromotive force & induced in the solenoid due to this change in current.
Express your answer in terms of AI/At, n, Z, and R.
► View Available Hint(s)
L=
Request Answer
'?
ΠΙΑΣΦ
'?
'?
The self-inductance L is related to the self-induced emf & by the equation &=-LAI/At. Find L for a long solenoid. (Hint: The self-inductance I will always be a positive quantity.)
Express the self-inductance in terms of the number of turns per length n, the physical dimensions R and Z, and relevant constants.
ΕΠΙΑΣΦ
'?
Transcribed Image Text:Part A Within the solenoid, but far from its ends, what is the magnetic field B due to the current I? Express your answer in terms of some or all of the following variables I, n, Z and any relevant constants (such as μ). B = Submit Part B $₁ = Submit What is the magnetic flux ₁ through a single turn of the solenoid? Express your answer in terms of the magnetic field B, quantities given in the introduction, and any needed constants. ID ΑΣΦ Part C E = Submit ID ΑΣΦ Part D Request Answer Suppose that the current varies with time, so that AI/At 0. Find the total electromotive force & induced in the solenoid due to this change in current. Express your answer in terms of AI/At, n, Z, and R. ► View Available Hint(s) L= Request Answer '? ΠΙΑΣΦ '? '? The self-inductance L is related to the self-induced emf & by the equation &=-LAI/At. Find L for a long solenoid. (Hint: The self-inductance I will always be a positive quantity.) Express the self-inductance in terms of the number of turns per length n, the physical dimensions R and Z, and relevant constants. ΕΠΙΑΣΦ '?
A
R
o m
A
B
Z
Air-Core Solenoid
mm
Schematic Symbol
B
Transcribed Image Text:A R o m A B Z Air-Core Solenoid mm Schematic Symbol B
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