6.3 The current in the capacitor of Assessment Problem 6.2 is 0 for r <0 and 3 cos 50,000 A fort 20. Find (a) e(t); (b) the maximum power delivered to the capacitor at any one instant of time; and (c) the maximum energy stored in the capacitor at any one instant of time. Answer: (a) 100 sin 50,000r V, 1 ≥ 0, (b) 150 W; (c) 3 mJ.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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6.3 

Objective 2-Know and be able to use the equations for voltage, current, power, and energy in a capacitor
6.2
Answer:
(a) 0.72 A;
The voltage at the terminals of the 0.6 µF
capacitor shown in the figure is 0 for t < 0 and
40e-15,000 sin 30,000r V for 2 0. Find (a) i(0);
(b) the power delivered to the capacitor at
t = 7/80 ms; and (c) the energy stored in the
capacitor at != π/80 ms.
(b)-649.2 mW;
(c) 126.13 μJ.
0.6 μF
NOTE: Also try Chapter Problems 6.16 and 6.21.
6.3
The current in the capacitor of Assessment
Problem 6.2 is 0 for t <0 and 3 cos 50,000r A
for t≥ 0. Find (a) v(t); (b) the maximum power
delivered to the capacitor at any one instant of
time; and (c) the maximum energy stored in the
capacitor at any one instant of time.
Answer: (a) 100 sin 50,000 V, 1 ≥ 0;
(b) 150 W; (c) 3 mJ.
Transcribed Image Text:Objective 2-Know and be able to use the equations for voltage, current, power, and energy in a capacitor 6.2 Answer: (a) 0.72 A; The voltage at the terminals of the 0.6 µF capacitor shown in the figure is 0 for t < 0 and 40e-15,000 sin 30,000r V for 2 0. Find (a) i(0); (b) the power delivered to the capacitor at t = 7/80 ms; and (c) the energy stored in the capacitor at != π/80 ms. (b)-649.2 mW; (c) 126.13 μJ. 0.6 μF NOTE: Also try Chapter Problems 6.16 and 6.21. 6.3 The current in the capacitor of Assessment Problem 6.2 is 0 for t <0 and 3 cos 50,000r A for t≥ 0. Find (a) v(t); (b) the maximum power delivered to the capacitor at any one instant of time; and (c) the maximum energy stored in the capacitor at any one instant of time. Answer: (a) 100 sin 50,000 V, 1 ≥ 0; (b) 150 W; (c) 3 mJ.
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