Suppose that at t = 0, we connect an uncharged 10 { μ F capacitor to a charging circuit consisting of a 2500-V voltage source in series with a 2 { M Ω resistance. At t = 40 s, the capacitor is disconnected from the charging circuit and connected in parallel with a 5 { M Ω resistor. Determine the voltage across the capacitor at t = 40 s and at t = 100 s. ( Hint: You may find it convenient to redefine the time variable to be t’ = t -40 for the discharge interval so that the discharge starts at t’ = 0.)
Suppose that at t = 0, we connect an uncharged 10 { μ F capacitor to a charging circuit consisting of a 2500-V voltage source in series with a 2 { M Ω resistance. At t = 40 s, the capacitor is disconnected from the charging circuit and connected in parallel with a 5 { M Ω resistor. Determine the voltage across the capacitor at t = 40 s and at t = 100 s. ( Hint: You may find it convenient to redefine the time variable to be t’ = t -40 for the discharge interval so that the discharge starts at t’ = 0.)
Suppose that at t= 0, we connect an uncharged 10
{
μ
F
capacitor to a charging circuit consisting of a 2500-V voltage source in series with a 2
{
M
Ω
resistance. At t= 40 s, the capacitor is disconnected from the charging circuit and connected in parallel with a 5
{
M
Ω
resistor. Determine the voltage across the capacitor at t =40 s and at t= 100 s. (Hint: You may find it convenient to redefine the time variable to be t’ = t-40 for the discharge interval so that the discharge starts at t’ = 0.)
QUESTION [3]
A no-load and short-circuit test should be conducted on a 220V/110V, 280VA transformer.
a. Draw the circuit diagram for the no-load test and include all measurements that should
be made. Also write down the maximum voltage that you should apply to the primary
winding and estimate the current drawn from the supply.
(5)
b. Draw a circuit diagram for the short-circuit test and include all measurements that should
be made. Also write down the maximum current that should be allowed to flow in the
primary winding and estimated the primary voltage that will cause this value of the
current to flow.
(5)
Only expert should solve it please
Need handwritten solution please
Chapter 4 Solutions
Mastering Engineering with Pearson eText -- Standalone Access Card -- for Electrical Engineering: Principles & Applications
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