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Electrical Pre-Trade Fundamentals
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Module 3
Series, Parallel, and Combination DC Circuits
1
Series Circuit Analysis: Resistance, Current, and Voltage Drops
Calculate total resistance, circuit current, and individual voltage drops in a series circuit.
Calculate total resistance, circuit current, and individual voltage drops in a series circuit.
2
Applying Kirchhoff’s Voltage Law to Single-Loop Circuits
Apply Kirchhoff’s voltage law to solve or verify values around a single circuit loop.
Apply Kirchhoff’s voltage law to solve or verify values around a single circuit loop.
3
Voltage Divider in an Unloaded Series Circuit
Apply the voltage-divider relationship to an unloaded series circuit.
Apply the voltage-divider relationship to an unloaded series circuit.
4
Calculating Total Resistance and Branch Currents in Parallel Circuits
Calculate total resistance and branch currents in a parallel circuit.
Calculate total resistance and branch currents in a parallel circuit.
5
Applying Kirchhoff’s Current Law at Circuit Junctions
Apply Kirchhoff’s current law to solve or verify currents at a circuit junction.
Apply Kirchhoff’s current law to solve or verify currents at a circuit junction.
6
Applying the Current-Divider Rule in Two-Branch Parallel Circuits
Apply the current-divider relationship to a two-branch parallel circuit.
Apply the current-divider relationship to a two-branch parallel circuit.
7
Equivalent Resistance in Series-Parallel Networks
Reduce a series-parallel resistor network to its equivalent resistance.
Reduce a series-parallel resistor network to its equivalent resistance.
8
Effects of Open and Short Circuits in Resistor Networks
Determine how an open circuit or short circuit changes expected values in a resistor network.
Determine how an open circuit or short circuit changes expected values in a resistor network.
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Core DC Quantities, Ohm’s Law, Power, and Energy
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