Why Does Voltage Not Drop In A Parallel Circuit

By | December 25, 2022



Circuits are a type of electrical system that allows electricity to travel in a certain path and circuit arrangement. Voltage is the measure of electrical potential energy, and understanding why voltage does not drop in a parallel circuit is essential for anyone interested in learning about electrical systems.

In a parallel circuit, the power source provides electrical current to each branch of the circuit. This means that the same voltage is supplied to each branch, and there is no drop in voltage between branches. This is because the current follows the path of least resistance, and since each branch has the same voltage, the current flows equally through each branch.

The reason why the voltage does not drop can be understood by looking at Ohm’s Law. This law states that for a given amount of current, the voltage remains constant regardless of the size of each branch. This means that the voltage remains the same even if a branch has a larger resistance than the other branches.

To summarize, in a parallel circuit, the power source provides electrical current to each branch of the circuit and the voltage is maintained across all branches due to Ohm’s Law. This is an important concept to understand when studying any electrical system, as it can help explain why certain components within the system behave in a certain way.


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