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First and second order circuits and equations = technical background and insights /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
First and second order circuits and equations/ Robert O'Rourke.
Reminder of title:
technical background and insights /
Author:
O'Rourke, Robert
Published:
Hoboken, NJ :John Wiley & Sons ; : c2024.,
Description:
1 online resource (xix, 332 p.) :ill. :
Notes:
Includes index.
Subject:
Electric circuits. -
Online resource:
https://onlinelibrary.wiley.com/doi/book/10.1002/9781119913566
ISBN:
9781119913566
First and second order circuits and equations = technical background and insights /
O'Rourke, Robert(Electronic engineer)
First and second order circuits and equations
technical background and insights /[electronic resource] :Robert O'Rourke. - 1st ed. - Hoboken, NJ :John Wiley & Sons ;c2024. - 1 online resource (xix, 332 p.) :ill.
Includes index.
About the Author -- Acknowledgments -- Part 1 Circuit Elements and Resistive Circuits -- 1 Ohm's Law, Branch Relationships, and Sources -- 2 Kirchhoff's Laws and Resistive Dividers -- 3 Opamp Models and Resistive Circuits -- 4 Reactive Circuit Elements -- Part 2 First-Order Circuits -- 5 First-Order RC and RL Circuits Introduction -- 6 First-Order Frequency Domain Response -- 7 Discharging and Charging First-Order RC and RL Circuits -- 8 Natural Response of RC and RL Circuits -- 9 First-Order Step Response of RC and RL Circuits -- 10 Complete Response of First-Order RC and RL Circuits -- Part 3 Second-Order Circuits -- 12 Second-Order RLC Circuits Overview -- 13 Second-Order RLC Frequency Response -- 14 Second-Order RLC Circuit Natural Response -- 15 Second-Order RLC Step and Complete Response -- Part 4 Technical Background Topics -- 16 Complex Numbers, Exponentials, and Phasors -- Index.
"First-order circuits are simple circuits that have a resistor connected with an energy storage element. It is either a conductor or an inductor. The first-order circuit with just a resistor and a conductor is called an RC circuit, while one with a resistor and an inductor is called an RL circuit. Second-order circuits are RLC circuits that contain two energy storage elements. They can be represented by a second-order differential equation. A characteristic equation, which is derived from the governing differential equation, is often used to determine the natural response of the circuit."--
Mode of access: World Wide Web.
ISBN: 9781119913566
LCCN: 2024008986Subjects--Topical Terms:
598302
Electric circuits.
LC Class. No.: TK454 / .O75 2024
Dewey Class. No.: 621.381501/5153
First and second order circuits and equations = technical background and insights /
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First and second order circuits and equations
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[electronic resource] :
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technical background and insights /
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Robert O'Rourke.
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1st ed.
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Hoboken, NJ :
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Piscataway, NJ :
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John Wiley & Sons ;
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IEEE Press,
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ill.
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Includes index.
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About the Author -- Acknowledgments -- Part 1 Circuit Elements and Resistive Circuits -- 1 Ohm's Law, Branch Relationships, and Sources -- 2 Kirchhoff's Laws and Resistive Dividers -- 3 Opamp Models and Resistive Circuits -- 4 Reactive Circuit Elements -- Part 2 First-Order Circuits -- 5 First-Order RC and RL Circuits Introduction -- 6 First-Order Frequency Domain Response -- 7 Discharging and Charging First-Order RC and RL Circuits -- 8 Natural Response of RC and RL Circuits -- 9 First-Order Step Response of RC and RL Circuits -- 10 Complete Response of First-Order RC and RL Circuits -- Part 3 Second-Order Circuits -- 12 Second-Order RLC Circuits Overview -- 13 Second-Order RLC Frequency Response -- 14 Second-Order RLC Circuit Natural Response -- 15 Second-Order RLC Step and Complete Response -- Part 4 Technical Background Topics -- 16 Complex Numbers, Exponentials, and Phasors -- Index.
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"First-order circuits are simple circuits that have a resistor connected with an energy storage element. It is either a conductor or an inductor. The first-order circuit with just a resistor and a conductor is called an RC circuit, while one with a resistor and an inductor is called an RL circuit. Second-order circuits are RLC circuits that contain two energy storage elements. They can be represented by a second-order differential equation. A characteristic equation, which is derived from the governing differential equation, is often used to determine the natural response of the circuit."--
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Mode of access: World Wide Web.
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Description based on online resource; title from digital title page (viewed on June 17, 2024)
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https://onlinelibrary.wiley.com/doi/book/10.1002/9781119913566
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