Jenny the Circuit Builder has seven components on her workbench. She is trying to buil circuit that stores the maximum amount of energy possible. Her only energy source is a batt with a Thévenin model as shown below (voltage source at 9V and internal resistance of 2 Real inductors and capacitors also have some internal resistance associated with them. The components have effective series resistance elements as shown below. [These are values fr real capacitors and inductors that you can buy in the $1 - $5 range]. 9V 252 ii. iii. iv. 392 100µFl www 0.6Ω 1mF | 10.032 10mF M | 1.492 1mH W r 1.59 10mH 10.882 47mH M (a) Find which single component will hold the most energy in steady state while connect across the terminals of the battery. (b) Design a circuit that can hold the most energy in steady state using... i. Only inductors Only capacitors A combination of inductors and capacitors Explain what would happen is your circuit was disconnected from the battery.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Tutorial exercise
Jenny the Circuit Builder has seven components on her workbench. She is trying to build a
circuit that stores the maximum amount of energy possible. Her only energy source is a battery
with a Thévenin model as shown below (voltage source at 9V and internal resistance of 20).
Real inductors and capacitors also have some internal resistance associated with them. The six
components have effective series resistance elements as shown below. [These are values from
real capacitors and inductors that you can buy in the $1 - $5 range].
9 V
2Ω
M
32 100μF
3Ω
ii.
iii.
iv.
0.6Ω
1mF |
10.0392 10mF
M
|
r
| 1.492 1mH
M
r
1.59 10mH
M
r
10.8892 47mH
Mmm
1
(a) Find which single component will hold the most energy in steady state while connected
across the terminals of the battery.
(b) Design a circuit that can hold the most energy in steady state using...
i.
Only inductors
Only capacitors
A combination of inductors and capacitors
Explain what would happen is your circuit was disconnected from the battery.
Try simulating it.
Transcribed Image Text:Tutorial exercise Jenny the Circuit Builder has seven components on her workbench. She is trying to build a circuit that stores the maximum amount of energy possible. Her only energy source is a battery with a Thévenin model as shown below (voltage source at 9V and internal resistance of 20). Real inductors and capacitors also have some internal resistance associated with them. The six components have effective series resistance elements as shown below. [These are values from real capacitors and inductors that you can buy in the $1 - $5 range]. 9 V 2Ω M 32 100μF 3Ω ii. iii. iv. 0.6Ω 1mF | 10.0392 10mF M | r | 1.492 1mH M r 1.59 10mH M r 10.8892 47mH Mmm 1 (a) Find which single component will hold the most energy in steady state while connected across the terminals of the battery. (b) Design a circuit that can hold the most energy in steady state using... i. Only inductors Only capacitors A combination of inductors and capacitors Explain what would happen is your circuit was disconnected from the battery. Try simulating it.
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