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 Apr 20 awarded Popular Question Jul 21 awarded Notable Question Feb 27 awarded Popular Question Oct 31 awarded Notable Question Sep 18 awarded Notable Question Jul 2 awarded Curious Apr 16 awarded Nice Question Apr 10 awarded Popular Question Dec 2 awarded Popular Question Oct 14 awarded Popular Question Oct 11 awarded Famous Question Apr 4 awarded Popular Question Mar 26 comment What is the maximum power available from a magnetic field? Okay, so I can solve for $E(t)$ from $B(t)$. Therefore, should I consider the energy density in the electric field $\frac{\epsilon_0e^2(t)}{2}$, then differentiate it over time so I can get the power density available? Given that $B(t)$ does no work on charges, I can just safely leave it out? Mar 25 asked What is the maximum power available from a magnetic field? Feb 14 awarded Popular Question Feb 10 awarded Nice Question Jan 23 awarded Popular Question Dec 6 awarded Notable Question Nov 11 awarded Yearling Aug 19 awarded Popular Question