
Parallel resistors - Khan Academy
We conclude: For resistors in parallel, the overall resistance is the reciprocal of the sum of reciprocals of the individual resistors. (This sounds complicated, but we will derive something …
Parallel resistors (derivation) (video) | Khan Academy
Learn how to identify parallel resistors, understand the concept of shared nodes and voltage, and apply Ohm's law to calculate equivalent resistance. Master the formula for parallel resistors …
Parallel conductance (article) | Khan Academy
Conductance is the reciprocal of resistance. The unit of conductance is the siemens (S). You can analyze parallel resistors by describing each resistor as a conductance.
Resistors in parallel (video) | Khan Academy
Explore the intriguing world of parallel resistors in circuits. Learn how current splits and combines in different branches, and how voltage remains constant across resistors. Uncover the formula …
Parallel resistors (video) | Khan Academy
In the special case where two equal resistors are in parallel, the equivalent resistance is half their value. Parallel resistance is always smaller than the smallest resistor, as it provides multiple …
Parallel resistors (derivation) (video) | Khan Academy
Learn how to identify parallel resistors, understand the concept of shared nodes and voltage, and apply Ohm's law to calculate equivalent resistance. Master the formula for parallel resistors …
Voltage divider (article) | Circuit analysis | Khan Academy
Two parallel resistors, R x and R y (parallel resistors share the same two nodes) can be combined to get an equivalent resistor with the ratio of their product over their sum,
Resistors in series and parallel review (article) | Khan Academy
Review how to find the equivalent resistance for resistors in parallel and series configurations. Recall the current and voltage properties of series and parallel configurations of resistors.
Series and parallel resistors (practice) | Khan Academy
Identify series and parallel resistors in a circuit setting
Delta-Wye resistor networks (article) | Khan Academy
In the Δ configuration, the resistance between x and y is R c in parallel with R a + R b . On the Y side, the resistance between x and y is the series combination R 1 + R 2 (again, assume …