Problem
A copper cable () of cross-section feeds a load drawing at . (a) What length of cable produces a voltage drop (about 1%)? (b) How much power is dissipated as heat in the cable at that length? Comment on the importance of adequate cross-sections in domestic wiring.
Solution
(a) Length. The allowed drop fixes the cable’s resistance: From the second law of Ohm (with ):
(b) Power dissipated in the cable (Joule heating): equivalent to .
Comment. dissipated along the cable is energy wasted as heat, and on a long or thin cable it can overheat the insulation. Since , doubling the cross-section halves both the voltage drop and the power lost: this is why domestic wiring uses larger cross-sections the higher the line current (e.g. for sockets, for lighting, larger cross-sections for ovens and water heaters).
Links
Topics: Electric circuits Concepts: Ohm’s law · Joule heating