Problem 5: A rectangular coil has side a-0.075 m, b-0.055 m, and resistance R 55 Ω. It moves into a magnetic field with magnitude B 0. 75 T with speed v 8.5 m/s Randomized Variables a = 0.075 m b 0.055 m R=55 Ω B = 0.75 T v- 8.5 m/s Δ Part (a) As the coil enters the magnetic field, express the magnitude of the magnetıc flux going through the loop in terms of the given variables. HOME 4 5 6 BACKSPACE CLEAR Submit Hint I give up! Hints:-19-deduction per hint. Hints remaining: Feedback: 1%-deduction per feedback. Part (b) Express the magnitude of the emf, є, induced in the loop in terms of B. and v. a Part (c) Calculate the numerical value of the emf in V. Δ Part (d) Express the current induced in the loop, I, in terms of ε and R a Part (e) Calculate the numerical value ofI in A Part (f) What's the direction of the current? Part (g) Following a similar procedure, calculate the magnitude of the current produced in the coil as it leaves the magnetic field in A. It leaves the magnetic field with the same speed.

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Chapter1: Units, Trigonometry. And Vectors
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Problem 5: A rectangular coil has side a-0.075 m, b-0.055 m, and resistance R
55 Ω. It moves into a magnetic field with magnitude B
0. 75 T with speed v
8.5 m/s
Randomized Variables
a = 0.075 m
b 0.055 m
R=55 Ω
B = 0.75 T
v- 8.5 m/s
Δ Part (a) As the coil enters the magnetic field, express the magnitude of the
magnetıc flux going through the loop in terms of the given variables.
HOME
4 5 6
BACKSPACE
CLEAR
Submit
Hint
I give up!
Hints:-19-deduction per hint. Hints remaining:
Feedback: 1%-deduction per feedback.
Part (b) Express the magnitude of the emf, є, induced in the loop in terms of B.
and v.
a Part (c) Calculate the numerical value of the emf in V.
Δ Part (d) Express the current induced in the loop, I, in terms of ε and R
a Part (e) Calculate the numerical value ofI in A
Part (f) What's the direction of the current?
Part (g) Following a similar procedure, calculate the magnitude of the current
produced in the coil as it leaves the magnetic field in A. It leaves the magnetic field with the
same speed.
Transcribed Image Text:Problem 5: A rectangular coil has side a-0.075 m, b-0.055 m, and resistance R 55 Ω. It moves into a magnetic field with magnitude B 0. 75 T with speed v 8.5 m/s Randomized Variables a = 0.075 m b 0.055 m R=55 Ω B = 0.75 T v- 8.5 m/s Δ Part (a) As the coil enters the magnetic field, express the magnitude of the magnetıc flux going through the loop in terms of the given variables. HOME 4 5 6 BACKSPACE CLEAR Submit Hint I give up! Hints:-19-deduction per hint. Hints remaining: Feedback: 1%-deduction per feedback. Part (b) Express the magnitude of the emf, є, induced in the loop in terms of B. and v. a Part (c) Calculate the numerical value of the emf in V. Δ Part (d) Express the current induced in the loop, I, in terms of ε and R a Part (e) Calculate the numerical value ofI in A Part (f) What's the direction of the current? Part (g) Following a similar procedure, calculate the magnitude of the current produced in the coil as it leaves the magnetic field in A. It leaves the magnetic field with the same speed.
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