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- The current in the RL circuit shown here increases to 40% of its steady-state value in 2.0 s. What is the time constant of the circuit?For a parallel circuit, how do I determine he %diff between I1 + I2, as compared to I (current) reflect Ohm's law, apart from same voltage across the circuit?Equation for LOOP CFEBC and NODE C using KCL and KVL Sign Convention.
- Answer the following circuitt by filling out all missing values.Compute for the voltage on each resistorFor a LR circuit, the current increased from 0 to 65% of it's max. value in 3.2 ms. -What's the time constant of this circuit (answer in ms)? -If L is 28mH, calculate the resistance R (answer in Ω) ?
- The formula to calculate impendence in an RL circuit is: calculate the resistance.what will be the equation for loop cfebc and answer for node c using kcl.The remaining circuit quantities may change instantaneously as required by Kirchhoff's rules. Calculate I2 in amps immediately after the switch (t = 0+), in that order. (All currents in this and the following two should be positive.)
- Consider the circuit as shown again. Suppose the circuit elements have the following values: ε = 12.0 V, R = 6.00 Ω, and L = 30.0 mH.(A) Find the time constant of the circuit.in the circuit shown in the figure, the S switch is closed at t=0 and the capasitors, which are completely empty, begin to fill. Here E=30V, C=3 uF and R=40 ohm. A) what is the time constant of the circuit, T, in the units of microseconds? B)when t=T, what is the total charge, in units of microcoulomb?The current in the RL circuit shown here increases to40% of its steady-state value in 2.0 s. What is the timeconstant of the circuit?