358547
At a given instant, the current and self induced emf in an inductor are directed, as shown in the for an inductor are directed, as shown in the figure. If the induced emf is \({17 V}\) and rate of change of current is \({25 {kA} / {s}}\), choose the correct statement.
358548 The length of solenoid is \(l\) whose windings are made of material of density \(D\) and resistivity \(\rho\). The winding resistance is \(R\). The inductance of solenoid is \(\left[ {m = } \right.\) mass of winding wire, \(\mu_{0}=\) permeability of free space]
358547
At a given instant, the current and self induced emf in an inductor are directed, as shown in the for an inductor are directed, as shown in the figure. If the induced emf is \({17 V}\) and rate of change of current is \({25 {kA} / {s}}\), choose the correct statement.
358548 The length of solenoid is \(l\) whose windings are made of material of density \(D\) and resistivity \(\rho\). The winding resistance is \(R\). The inductance of solenoid is \(\left[ {m = } \right.\) mass of winding wire, \(\mu_{0}=\) permeability of free space]
358547
At a given instant, the current and self induced emf in an inductor are directed, as shown in the for an inductor are directed, as shown in the figure. If the induced emf is \({17 V}\) and rate of change of current is \({25 {kA} / {s}}\), choose the correct statement.
358548 The length of solenoid is \(l\) whose windings are made of material of density \(D\) and resistivity \(\rho\). The winding resistance is \(R\). The inductance of solenoid is \(\left[ {m = } \right.\) mass of winding wire, \(\mu_{0}=\) permeability of free space]
358547
At a given instant, the current and self induced emf in an inductor are directed, as shown in the for an inductor are directed, as shown in the figure. If the induced emf is \({17 V}\) and rate of change of current is \({25 {kA} / {s}}\), choose the correct statement.
358548 The length of solenoid is \(l\) whose windings are made of material of density \(D\) and resistivity \(\rho\). The winding resistance is \(R\). The inductance of solenoid is \(\left[ {m = } \right.\) mass of winding wire, \(\mu_{0}=\) permeability of free space]