In the circuit shown in the following figure(Figure 1) the capacitor has capacitance 20 μF and is initially uncharged. The resistor Ro has resistance 11 2. An emf of 95.0 V is added in series with the capacitor and the resistor. The emf is placed between the capacitor and the switch, with the positive terminal of the emf adjacent to the capacitor. The small circuit is not connected in any way to the large one. The wire of the small circuit has a resistance of 1.3 /m and contains 24 loops. The large circuit is a rectangle 2.0 m by 4.0 m, while the small one has dimensions a = 10.0 cm and b = 25.0 cm. The distance c is 6.0 cm. (The figure is not drawn to scale.) Both circuits are held stationary. Assume that only the wire nearest the small circuit produces an appreciable magnetic field through it. Figure < Ro 1 of 1 > a 10 C b ▾ ▼ Part A The switch is closed at t = 0. When the current in the large circuit. 3.30 A, what is the magnitude of the induced current in the small circuit? Express your answer with the appropriate units. I= Part B Value HA Submit Request Answer Ocounterclockwise clockwise 4 ✔ Correct What is the direction of the induced current in the small circuit? → C Submit Previous Answers < Return to Assignment. Units ? Provide Feedback

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter29: Direct Current (dc) Circuits
Section: Chapter Questions
Problem 60PQ: Figure P29.60 shows a simple RC circuit with a 2.50-F capacitor, a 3.50-M resistor, a 9.00-V emf,...
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In the circuit shown in the following figure(Figure 1) the capacitor has
capacitance 20 μF and is initially uncharged. The resistor Ro has
resistance 11 2. An emf of 95.0 V is added in series with the
capacitor and the resistor. The emf is placed between the capacitor
and the switch, with the positive terminal of the emf adjacent to the
capacitor. The small circuit is not connected in any way to the large
one. The wire of the small circuit has a resistance of 1.3 N/m and
contains 24 loops. The large circuit is a rectangle 2.0 m by 4.0 m,
while the small one has dimensions a = 10.0 cm and b = 25.0 cm.
The distance c is 6.0 cm. (The figure is not drawn to scale.) Both
circuits are held stationary. Assume that only the wire nearest the
small circuit produces an appreciable magnetic field through it.
Figure
Ro
C
S
C
a
1 of 1 >
b
▼
▼
Part A
The switch is closed at t = 0. When the current in the large circuit is 3.30 A, what is the magnitude of the induced current in the small circuit?
Express your answer with the appropriate units.
I =
Part B
Submit Request Answer
Value
μA
counterclockwise
clockwise
Submit
What is the direction of the induced current in the small circuit?
Previous Answers
Correct
Units
< Return to Assignment
]] ?
Provide Feedback
Transcribed Image Text:In the circuit shown in the following figure(Figure 1) the capacitor has capacitance 20 μF and is initially uncharged. The resistor Ro has resistance 11 2. An emf of 95.0 V is added in series with the capacitor and the resistor. The emf is placed between the capacitor and the switch, with the positive terminal of the emf adjacent to the capacitor. The small circuit is not connected in any way to the large one. The wire of the small circuit has a resistance of 1.3 N/m and contains 24 loops. The large circuit is a rectangle 2.0 m by 4.0 m, while the small one has dimensions a = 10.0 cm and b = 25.0 cm. The distance c is 6.0 cm. (The figure is not drawn to scale.) Both circuits are held stationary. Assume that only the wire nearest the small circuit produces an appreciable magnetic field through it. Figure Ro C S C a 1 of 1 > b ▼ ▼ Part A The switch is closed at t = 0. When the current in the large circuit is 3.30 A, what is the magnitude of the induced current in the small circuit? Express your answer with the appropriate units. I = Part B Submit Request Answer Value μA counterclockwise clockwise Submit What is the direction of the induced current in the small circuit? Previous Answers Correct Units < Return to Assignment ]] ? Provide Feedback
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