358385
A 30 Henry inductor coil is connected to a \(20 \,\Omega\) resistance in series (as shown in figure). The time at which rate of dissipation of energy (Joule's heat) across resistance is equal to the rate at which magnetic energy is stored in the inductor, is
[Take \(l\)\(n2 = 0.69\)]
358385
A 30 Henry inductor coil is connected to a \(20 \,\Omega\) resistance in series (as shown in figure). The time at which rate of dissipation of energy (Joule's heat) across resistance is equal to the rate at which magnetic energy is stored in the inductor, is
[Take \(l\)\(n2 = 0.69\)]
358385
A 30 Henry inductor coil is connected to a \(20 \,\Omega\) resistance in series (as shown in figure). The time at which rate of dissipation of energy (Joule's heat) across resistance is equal to the rate at which magnetic energy is stored in the inductor, is
[Take \(l\)\(n2 = 0.69\)]
358385
A 30 Henry inductor coil is connected to a \(20 \,\Omega\) resistance in series (as shown in figure). The time at which rate of dissipation of energy (Joule's heat) across resistance is equal to the rate at which magnetic energy is stored in the inductor, is
[Take \(l\)\(n2 = 0.69\)]