Problem
Synthesis: two charged capacitors connected together. Two isolated capacitors: charged to and charged to , with the same polarity. They are connected in parallel (positive plate to positive plate). (a) Total charge before connection; (b) common voltage after equilibrium; (c) energy before and after. Explain why energy is not conserved: where does it go?
Solution
(a) Total charge. The initial charges add up (same polarity): The total charge is conserved: it can neither disappear nor be created by the connection.
(b) Common voltage. In parallel the two capacitors share the same voltage; the equivalent capacitance is , so
(c) Energy before and after.
Why energy is not conserved. About J () is missing. Charge is always conserved, but energy is not: during the connection transient the two voltages differ, so a current flows through the connecting wires (which have some resistance, however small). This current dissipates energy through the Joule effect in the wires, and partly radiates it away as electromagnetic waves. This is a general result: connecting two capacitors at different voltages always entails an energy loss, no matter how small the resistance.
Links
Topics: Campo elettrico e potenziale Concepts: Capacità e condensatore · Densità di energia del campo Skills: Conservazione dell’energia Methods: Semplificazione serie-parallelo Objects: Condensatore piano