Lab Orientation |
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Digital Electronics |
Lab Safety |
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The 4 Input Truth Table |
An Introduction to the Solderless
Breadboard |
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Binary to Decimal Number Conversion |
Electronic
WorkBench Basics, Opening a file for simulation |
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Hexadecimal Number Conversion Practice
Problems |
Course Book Etiquette |
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Hexidecimal Numbering System |
Lab Packet Etiquette for
DC/AC I, and Digital Electronics |
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The Logic
Gates |
Lab Packet Etiquette for
DC/AC II, ED I, and ED II |
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The development of a
Boolean expression for a combinational logic circuit |
The Powers
of Ten, The proper use of symbols |
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Boolean Theorems; Single
Variable |
Introduction
to the Digital Multimeter |
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Boolean
Theorems; Multi-variable |
Proper Meter Placement |
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The
Universal NAND Gate |
The Digital
Logic Probe |
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The
Universal NOR Gate |
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Asynchronous vs
Synchronous Inputs on a Flip Flop |
DC/AC I &
II |
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Binary Counter using a JK Flip Flop |
Primer on
Electrical Units, Abbreviations, and Symbols |
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The MOD Number |
Resistor Color Code Description |
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Development of a MOD 10 Counter |
Resistor Color Code Practice |
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TTL Series Characteristics |
Total Resistance of a Series Circuit |
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Determination of the Fan-Out |
Series Resistance -
Practice Problems |
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Current and Voltage Parameters |
Total Resistance in a DC Parallel
Circuit |
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Propagation Delay |
Parallel Resistance -
Practice Problems |
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Power Dissipation |
Series-Parallel Resistance - Practice
Problems |
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Speed-Power Product |
Series-Parallel Resistance
- Additional Practice Problems |
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Karnaugh Mapping with 3
Variables |
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Ohm's Law |
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Pulse
Train Fundamentals |
Ohm's
Law Practice Problems Circuit 1 |
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Pulse
Train Fundamentals, Practice Problem #1 |
Ohm's
Law Practice Problems Circuit 2 |
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Pulse
Train Fundamentals, Practice Problem #2 |
Ohm's
Law Practice Problems Circuit 3 |
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Pulse
Train Fundamentals, Practice Problem #3 |
Ohm's
Law Practice Problems Circuit 4 |
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Pulse
Train Fundamentals, Practice Problem #4 |
Ohm's
Law Practice Problems Circuit 5 |
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Pulse
Train Fundamentals, Practice Problem #5 |
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Power Law |
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Electronic Devices I & II |
Power
Law Practice Problems Circuit 1 |
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Voltage
Source Approximations |
Power
Law Practice Problems Circuit 2 |
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Constant Current Source
Approximations |
Power
Law Practice Problems Circuit 3 |
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Silicon Diode Basics |
Power Law Practice Problems Circuit
4 |
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Diode Approximations |
Power Law Practice Problems Circuit
5 |
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Half-Wave Rectifier |
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Full-Wave
Rectifier |
Series Circuit Analysis |
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Operation of a Full-Wave Bridge Rectifier |
Series
Circuit Analysis Practice Problems Circuit 1 |
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The Light
Emitting Diode (LED) |
Series
Circuit Analysis Practice Problems Circuit 2 |
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The Zener
Diode |
Series Circuit Analysis Practice Problems Circuit 3 |
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The Zener
Diode, Practice Problems |
Series Circuit Analysis Practice Problems Circuit 4 |
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Series Circuit Analysis Practice Problems Circuit 5 |
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Transistor Fundamentals |
Series
Circuit Analysis Practice Problems Circuit 6 |
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(BJT) Vocabulary |
Series Circuit Analysis Practice Problems Circuit 7 |
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Base-Biased NPN Transistor |
Series
Circuit Analysis Practice Problems Circuit 8 |
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Emitter-Biased NPN Transistor |
Series Circuit Analysis Practice Problems Circuit 9 |
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Voltage-Divider Biased NPN Transistor |
Series Circuit Analysis Practice Problems Circuit 10 |
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Saturation
and Cutoff |
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AC Models |
Parallel Circuit Analysis |
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AC Model
Equations |
Parallel Circuit Analysis Practice Problems Circuit 1 |
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Amplifier
Classes |
Parallel
Circuit Analysis Practice Problems Circuit 2 |
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Bypass
Capacitors |
Parallel
Circuit Analysis Practice Problems Circuit 3 |
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Coupling
Capacitors |
Parallel
Circuit Analysis Practice Problems Circuit 4 |
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Decibel
Gain, Voltage and Power |
Parallel
Circuit Analysis Practice Problems Circuit 5 |
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E-MOSFET:
The Ohmic Region |
Parallel
Circuit Analysis Practice Problems Circuit 6 |
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Frequency
Response Vocabulary |
Parallel
Circuit Analysis Practice Problems Circuit 7 |
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(JFET) Junction Field Effect Transistor |
Parallel Circuit Analysis
Practice Problems Circuit 8 |
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JFET Amplifiers |
Parallel Circuit Analysis
Practice Problems Circuit 9 |
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JFET Drain Curves |
Parallel Circuit Analysis
Practice Problems Circuit 10 |
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MOSFET
Vocabulary |
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Review of
Logs |
Series-Parallel Circuit
Analysis |
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Series-Parallel Circuit Analysis Practice Problems Circuit 1 |
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Op Amp Fundamentals |
Series-Parallel Circuit Analysis Practice Problems Circuit 2 |
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The
Inverting Amplifier |
Series-Parallel Circuit Analysis Practice Problems Circuit 3 |
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The
Non-Inverting Amplifier |
Series-Parallel Circuit Analysis Practice Problems Circuit 4 |
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The
Operational Amplifier |
Series-Parallel Circuit Analysis Practice Problems
Circuit 5 |
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The Summing
Amplifier |
Series-Parallel Circuit Analysis Practice Problems
Circuit 6 |
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The Transconductance Amplifier |
Series-Parallel Circuit Analysis Practice Problems Circuit 7 |
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The Transresistance Amplifier |
Series-Parallel Circuit Analysis Practice Problems
Circuit 8 |
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Series-Parallel Circuit Analysis Practice Problems Circuit 9 |
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Transistor DC Practice Problem, Circuit 1 |
Series-Parallel Circuit Analysis Practice Problems Circuit 10 |
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Transistor DC Practice Problem, Circuit 2 |
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Transistor DC Practice Problem, Circuit 3 |
Batteries |
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Transistor DC Practice Problem, Circuit 4 |
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Transistor DC Practice Problem, Circuit 5 |
Capacitors |
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Transistor ac Practice Problem, Circuit 1 |
Capacitors:
What's inside? |
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Transistor ac Practice Problem, Circuit 2 |
Total Capacitance of a Series Circuit |
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Transistor ac Practice Problem, Circuit 3 |
Total Capacitance of a
Series Circuit Practice Problems |
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Transistor ac Practice Problem, Circuit 4 |
Total Capacitance of a Parallel Circuit |
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Transistor ac Practice Problem, Circuit 5 |
Total Capacitance of a
Parallel Circuit Practice Problems |
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Capacitors,
Series-Parallel Practice Problems |
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Electronic Workbench Fundamentals |
Capacitive
Reactance |
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The Ideal
Bode Plot |
Capacitive
Reactance Practice Problems |
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EWB, The
Bode Plotter |
RC Time Constant |
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TI-83 Plus Calculator |
Kirchhoff's Current
Law (KCL) |
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The Arctan
function |
KCL Practice Problems |
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Complex
Numbers |
Kirchhoff's Voltage Law
(KVL) |
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Complex
Conjugate Conversion |
KVL Practice Problems |
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Complex
Number Conversion |
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Complex
Reciprocals |
Current
Divider Rule |
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The Exponent |
Current Divider Rule
Practice Problems |
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The Editing
Keys |
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The Log
Function |
Voltage
Divider Rule |
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Raising a
number to a power |
Voltage Divider Practice
Problems |
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The
Reciprocal Key |
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The Set-up
Mode |
Maximum Power Transfer
Theorem |
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The Square
Root Function |
Norton Theorem |
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Superposition Theorem |
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The TI-86 Calculator |
Thevenin Theorem
|
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The Arctan function |
Thevenin
Resistance Practice
Problems |
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Complex
Numbers |
Thevenin Voltage Practice Problems |
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Complex
Conjugate Conversion |
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Complex
Number Conversion |
Sine
Wave Fundamentals |
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Complex
Reciprocals |
Sine
Wave Fundamentals Practice Problem #1 |
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The
Exponent |
Sine
Wave Fundamentals Practice Problem #2 |
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The Editing
Keys |
Sine
Wave Fundamentals Practice Problem #3 |
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The Log
function |
Sine
Wave Fundamentals Practice Problem #4 |
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Raising a
number to a power |
Sine
Wave Fundamentals Practice Problem #5 |
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The
Reciprocal key |
Sine
Wave Fundamentals Practice Problem #6 |
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The Set-up
Mode |
Sine
Wave Fundamentals Practice Problem #7 |
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The
Simultaneous Equation Solver |
Sine
Wave Fundamentals Practice Problem #8 |
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The Square
Root function |
Sine
Wave Fundamentals Practice Problem #9 |
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Using the
Memory |
Sine
Wave Fundamentals Practice Problem #10 |
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The TI-89 Calculator |
Mathematical Expression of an AC Sine
Wave |
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The Arctan function |
AC Sine Wave Practice Problems |
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Complex Numbers |
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Complex Conjugate Conversion |
Inductors |
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Complex Number Conversion |
Inductors in Series |
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Complex Reciprocals |
Inductors in
Series Practice Problems |
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The Exponent |
Inductors in
Parallel |
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The Clean-Up
Function |
Inductors in Parallel Practice Problems |
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The Log Function |
Inductors, Series-Parallel Practice Problems |
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Raising a number to a power |
Inductive Reactance |
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The Reciprocal key |
Inductive Reactance Practice Problems |
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The Set-up Mode |
L/R Time
Constant |
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The Simultaneous Equation
Solver |
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The Square Root Function |
Transformers |
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Using The Memory |
Transformer
Practice Problems |
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Sample Exams |
DC/AC II & III |
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Digital Electronics Sample Exam |
Kirchhoff's
Current Law with Complex Numbers |
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DC/AC I
Sample Exam |
Kirchhoff's
Voltage Law with Complex Numbers |
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DC/AC I
Sample Exam, Unit 1 |
Current
Divider Rule with Complex Numbers |
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DC/AC I
Sample Exam, Unit 2 |
Voltage
Divider Rule with Complex Numbers |
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DC/AC I
Sample Exam, Unit 3 |
Superposition Theorem with Complex Numbers |
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DC/AC I
Sample Exam, Unit 4 |
Series Impedance with
Complex Numbers |
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DC/AC
I Sample Exam, Unit 5 |
Series Impedance Practice
Problems with Complex Numbers |
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DC/AC I
Sample Exam, Unit 8 |
Parallel Impedance with
Complex Numbers |
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DC/AC
I Sample Exam, Unit 9 |
Parallel Impedance Practice
Problems with Complex Numbers |
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DC/AC
I Sample Exam, Unit 10 |
Series-Parallel Impedance
with Complex Numbers |
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DC/AC
I Sample Exam, Unit 11 |
Series-Parallel Impedance
Practice Problems with Complex Numbers |
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DC/AC
I Sample Exam, Unit 12 |
Impedance:
Series to Parallel Conversion |
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Impedance:
Parallel to Series Conversion |
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Complex Numbers |
Complex Power,
it's not really that "complex" |
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Complex
Numbers, so what's the fuss all about? |
Complex Power,
an alternate method |
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Power Factor
Correction |
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Excel |
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Locking a
Cell |
Electronic Circuit Analysis |
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Entering a Formula |
The
Transfer Function and Frequency Response of a Low Pass filter |
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Converting
to a Complex Number |
Ideal
Filters; Low-pass, High-pass, Bandpass, and Notch |
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Rectangular
to Polar - Magnitude |
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Rectangular
to Polar - Phase (radians) |
Transfer Functions |
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Convert
radians to degrees |
The RC
Low-pass Filter |
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Spreadsheet Layout Hints |
The RC
High-pass Filter |
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Addition of
Complex numbers |
The RL Low-pass Filter |
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Subtraction
of Complex numbers |
The RL High-pass Filter |
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Multiplication of Complex numbers |
The RC
Low-pass Filter with Bode Plot |
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Division of
Complex numbers |
The RC
High-pass Filter with Bode Plot |
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Complex
Conjugate |
The RL High-pass Filter
with Bode Plot |
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Square Root
of a Complex number |
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