Series Circuits: Characteristics and Behavior
This page delves into the specifics of series circuits, explaining their key characteristics and how electrical components behave when connected in series.
Definition: A series circuit is defined as a circuit with a single loop where all components are connected sequentially.
The page highlights that if one component in a series circuit fails, it affects the entire circuit.
Highlight: In a series circuit, the potential difference (voltage) is split between all components, while the current remains the same throughout the circuit.
The behavior of voltage, current, and resistance in series circuits is explained in detail:
- Voltage in series: V_Total = V₁ + V₂ + V₃
- Current in series: Remains constant and can be measured using an ammeter placed anywhere in the circuit.
- Resistance in series: R_Total = R₁ + R₂ + R₃
Example: In a series circuit with two resistors of 2Ω each, the total resistance would be 2Ω + 2Ω = 4Ω.
The page also notes that the resistance of an ammeter is negligible and not added to the total resistance calculation.





