Engineering Capstone: All About Circuits
Description: Engineering Capstone: All About Circuits Alternating Current (AC) Table of Contents 1. Basic AC Theory 2. Complex Numbers 3. Reactance and ImpedanceInductive 4. Reactance and ImpedanceCapacitive 5. Reactance and ImpedanceR, L, And C 6.
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slide1. Engineering Capstone:All About Circuits Alternating Current (AC)<br>
slide2. Table of Contents 1. Basic AC Theory
2. Complex Numbers
3. Reactance and Impedance—Inductive
4. Reactance and Impedance—Capacitive
5. Reactance and Impedance—R, L, And C
6. Resonance
7. Mixed-Frequency AC Signals 8. Filters
9. Transformers
10. Polyphase AC Circuits
11. Power Factor
12. AC Metering Circuits
13. AC Motors
14. Transmission Lines<br>
slide3. 1. Basic AC Theory What is Alternating Current (AC)?
AC Waveforms
Measurements of AC Magnitude
Simple AC Circuit Calculations
AC Phase
Principles of Radio<br>
slide4. 2. Complex Numbers Introduction to Complex Numbers
Vectors and AC Waveforms
Simple Vector Addition
Complex Vector Addition
Polar Form and Rectangular Form Notation for Complex Numbers
Complex Number Arithmetic
More on AC “polarity”
Some Examples with AC Circuits<br>
slide5. 3. Reactance and Impedance—Inductive AC Resistor Circuits (Inductive)
AC Inductor Circuits
Series Resistor-Inductor Circuits
Parallel Resistor-Inductor Circuits
Inductor Quirks
What Is the Skin Effect?<br>
slide6. 4. Reactance and Impedance—Capacitive AC Resistor Circuits (Capacitive)
AC Capacitor Circuits
Series Resistor-Capacitor Circuits
Parallel Resistor-Capacitor Circuits
Capacitor Quirks<br>
slide7. 5. Series And Parallel Circuits Static Electricity
Conductors, Insulators, and Electron Flow
What Are Electric Circuits?
Voltage and Current
Resistance
Voltage and Current in a Practical Circuit
Conventional Versus Electron Flow<br>
slide8. 6. Divider Circuits And Kirchhoff's Laws Voltage Divider Circuits
Kirchhoff’s Voltage Law (KVL)
Current Divider Circuits and the Current Divider Formula
Kirchhoff’s Current Law (KCL)<br>
slide9. 7. Series-parallel Combination Circuits Static Electricity
Conductors, Insulators, and Electron Flow
What Are Electric Circuits?
Voltage and Current
Resistance
Voltage and Current in a Practical Circuit
Conventional Versus Electron Flow<br>
slide10. 8. DC Metering Circuits What is a Meter?
Voltmeter Design
Voltmeter Impact on Measured Circuit
Ammeter Design
Ammeter Impact on Measured Circuit
Ohmmeter Design
High Voltage Ohmmeters
Multimeters
Kelvin (4-wire) Resistance Measurement
Bridge Circuits
Wattmeter Design
Creating Custom Calibration Resistances<br>
slide11. 9. Electrical Instrumentation Signals Analog and Digital Signals
Voltage Signal Systems
Current Signal Systems
Tachogenerators
Thermocouples
pH Measurement
Strain Gauges<br>
slide12. 10. DC Network Analysis What is Network Analysis?
Branch Current Method Analysis
Mesh Current Method (Loop Current Method)
Solving Unbalanced Wheatstone Bridge Circuits Via Mesh Current Method
Node Voltage Method
Introduction to Network Theorems for Circuit Analysis
Millman’s Theorem
Superposition Theorem
How to Use Thevenin’s Theorem
What is Norton’s Theorem and the Norton Equivalent Circuit?
Converting Between Thevenin and Norton Equivalent Circuits
Millman’s Theorem Revisited
Maximum Power Transfer Theorem
Δ-Y and Y-Δ Conversions<br>
slide13. 11. Batteries And Power Systems Electron Activity in Chemical Reactions
Battery Construction
Battery Ratings
Special-purpose Batteries
Practical Considerations - Batteries<br>
slide14. 12. Physics Of Conductors And Insulators Introduction to Conductance and Conductors
Conductor Size
Conductor Ampacity
Fuses
Specific Resistance
Temperature Coefficient of Resistance
Superconductivity
Insulator Breakdown Voltage<br>
slide15. 13. Capacitors Electric Fields and Capacitance
Capacitors and Calculus
Factors Affecting Capacitance
Series and Parallel Capacitors
Practical Considerations - Capacitors<br>
slide16. 14. Magnetism and Electromagnetism Permanent Magnets
Electromagnetism
Magnetic Units of Measurement
Permeability and Saturation
Electromagnetic Induction
Mutual Inductance<br>
slide17. 15. Inductors Magnetic Fields and Inductance
Inductor Voltage and Current Relationship
Factors Affecting Inductance
Series and Parallel Inductors
Practical Considerations - Inductors<br>
slide18. 16. RC and L/R Time Constants Electrical Transients
Capacitor Transient Response
Inductor Transient Response
Voltage and Current Calculations
Why L/R and not LR?
Complex Voltage and Current Calculations
Complex Circuits
Solving for Unknown Time<br>
slide19. Contributor List Vol I. Credits<br>
slide20. References https://www.allaboutcircuits.com/textbook/alternating-current/chpt-1/what-is-alternating-current-ac/
This free, multi-volume electrical engineering textbook covers electricity and electronics. Written by Tony R. Kuphaldt under the Design Science License, it has been reformatted and updated by All About Circuits.
https://www.allaboutcircuits.com/about-us/<br>
slide2. Table of Contents 1. Basic AC Theory
2. Complex Numbers
3. Reactance and Impedance—Inductive
4. Reactance and Impedance—Capacitive
5. Reactance and Impedance—R, L, And C
6. Resonance
7. Mixed-Frequency AC Signals 8. Filters
9. Transformers
10. Polyphase AC Circuits
11. Power Factor
12. AC Metering Circuits
13. AC Motors
14. Transmission Lines<br>
slide3. 1. Basic AC Theory What is Alternating Current (AC)?
AC Waveforms
Measurements of AC Magnitude
Simple AC Circuit Calculations
AC Phase
Principles of Radio<br>
slide4. 2. Complex Numbers Introduction to Complex Numbers
Vectors and AC Waveforms
Simple Vector Addition
Complex Vector Addition
Polar Form and Rectangular Form Notation for Complex Numbers
Complex Number Arithmetic
More on AC “polarity”
Some Examples with AC Circuits<br>
slide5. 3. Reactance and Impedance—Inductive AC Resistor Circuits (Inductive)
AC Inductor Circuits
Series Resistor-Inductor Circuits
Parallel Resistor-Inductor Circuits
Inductor Quirks
What Is the Skin Effect?<br>
slide6. 4. Reactance and Impedance—Capacitive AC Resistor Circuits (Capacitive)
AC Capacitor Circuits
Series Resistor-Capacitor Circuits
Parallel Resistor-Capacitor Circuits
Capacitor Quirks<br>
slide7. 5. Series And Parallel Circuits Static Electricity
Conductors, Insulators, and Electron Flow
What Are Electric Circuits?
Voltage and Current
Resistance
Voltage and Current in a Practical Circuit
Conventional Versus Electron Flow<br>
slide8. 6. Divider Circuits And Kirchhoff's Laws Voltage Divider Circuits
Kirchhoff’s Voltage Law (KVL)
Current Divider Circuits and the Current Divider Formula
Kirchhoff’s Current Law (KCL)<br>
slide9. 7. Series-parallel Combination Circuits Static Electricity
Conductors, Insulators, and Electron Flow
What Are Electric Circuits?
Voltage and Current
Resistance
Voltage and Current in a Practical Circuit
Conventional Versus Electron Flow<br>
slide10. 8. DC Metering Circuits What is a Meter?
Voltmeter Design
Voltmeter Impact on Measured Circuit
Ammeter Design
Ammeter Impact on Measured Circuit
Ohmmeter Design
High Voltage Ohmmeters
Multimeters
Kelvin (4-wire) Resistance Measurement
Bridge Circuits
Wattmeter Design
Creating Custom Calibration Resistances<br>
slide11. 9. Electrical Instrumentation Signals Analog and Digital Signals
Voltage Signal Systems
Current Signal Systems
Tachogenerators
Thermocouples
pH Measurement
Strain Gauges<br>
slide12. 10. DC Network Analysis What is Network Analysis?
Branch Current Method Analysis
Mesh Current Method (Loop Current Method)
Solving Unbalanced Wheatstone Bridge Circuits Via Mesh Current Method
Node Voltage Method
Introduction to Network Theorems for Circuit Analysis
Millman’s Theorem
Superposition Theorem
How to Use Thevenin’s Theorem
What is Norton’s Theorem and the Norton Equivalent Circuit?
Converting Between Thevenin and Norton Equivalent Circuits
Millman’s Theorem Revisited
Maximum Power Transfer Theorem
Δ-Y and Y-Δ Conversions<br>
slide13. 11. Batteries And Power Systems Electron Activity in Chemical Reactions
Battery Construction
Battery Ratings
Special-purpose Batteries
Practical Considerations - Batteries<br>
slide14. 12. Physics Of Conductors And Insulators Introduction to Conductance and Conductors
Conductor Size
Conductor Ampacity
Fuses
Specific Resistance
Temperature Coefficient of Resistance
Superconductivity
Insulator Breakdown Voltage<br>
slide15. 13. Capacitors Electric Fields and Capacitance
Capacitors and Calculus
Factors Affecting Capacitance
Series and Parallel Capacitors
Practical Considerations - Capacitors<br>
slide16. 14. Magnetism and Electromagnetism Permanent Magnets
Electromagnetism
Magnetic Units of Measurement
Permeability and Saturation
Electromagnetic Induction
Mutual Inductance<br>
slide17. 15. Inductors Magnetic Fields and Inductance
Inductor Voltage and Current Relationship
Factors Affecting Inductance
Series and Parallel Inductors
Practical Considerations - Inductors<br>
slide18. 16. RC and L/R Time Constants Electrical Transients
Capacitor Transient Response
Inductor Transient Response
Voltage and Current Calculations
Why L/R and not LR?
Complex Voltage and Current Calculations
Complex Circuits
Solving for Unknown Time<br>
slide19. Contributor List Vol I. Credits<br>
slide20. References https://www.allaboutcircuits.com/textbook/alternating-current/chpt-1/what-is-alternating-current-ac/
This free, multi-volume electrical engineering textbook covers electricity and electronics. Written by Tony R. Kuphaldt under the Design Science License, it has been reformatted and updated by All About Circuits.
https://www.allaboutcircuits.com/about-us/<br>