
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Transcribed Image Text:With reference to the figure below, sketch the inductor voltage, v, as a function of time, 0<t< 60 ms. Solve
also for the energy stored on the inductor at t- 40 ms.
V @0- 20 ms
mV
V@ 20 - 40 ms
mV
V@40 - 50 ms
mv
V@ 50 - 60 ms
mv
W.
(A)
0.2 H
r(msi
10
20
30
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- A 39-H inductor is in a series circuit with a 12-V battery and a 25-Qresistor. A switch completing the circuit is closed. When the switch is closed, find the initial voltage difference across the resistor. Answer in Volts.arrow_forwardI Review | Constants In the circuit shown in the following figure(Figure 1) the capacitor has capacitance 17 uF and is initially uncharged. The resistor Ro has resistance 11N. An emf of 91.0 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 1.0 N/m and contains 30 loops. The large Part A The switch is closed at t = 0. When the current in the large circuit is 3.10 A , what is the magnitude of the induced current in the small circuit? Express your answer with the appropriate units. circuit is a rectangle 2.0 m by 4.0 m, while the small one has dimensions a = 13.0 cm and b = 23.0 cm. The distance c is 4.0 cm. (The figure is not drawn to scale.) Both circuits are held stationary. Assume that only the wire nearest the small circuit produces an…arrow_forwardy. The voltage across the capacitor shown is known to be 2500t up V for tzo - Yc = 500t e 5UF a. Find the current through the capacitor for t >o. b. Find the energy stored in the capacitor at t = 100USarrow_forward
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