First, I would like to thank anyone who takes the time to help me with this problem.
In an RL circuit τ = -Leq/Req. In the following problem does this method still apply.
I ask because when I looked at the solution in the book the equations were set up different and the final answer was merely approximated.
I took Leq = to be --- 2mH || 15 mH = 1.76mH
and Req = to be--- 12 ||72Ω = 10Ω
Is this correct, or do the resistors in series with the inductors prevent me from taking this approach.
The book created 2 different differential equations for the two separate branches (with different values of tau) and then added them together. I created 1 using the equivalent values. I got a similar answer but I'm wondering if that was a coincidence.
The problem:
A short circuit is dropped between points a and b.
a) Find the initial value of the current through ab.
b) What is the final value of the current.
c) How many millisecond after the short will the current(ab) equal 210?
My solution:
a) Iab(0) = Isc - Iold ; 220- 20 = 200
b) Iab(inf) = Isc = 220
c) .122 ms; book = .123 ms
Thank you.
In an RL circuit τ = -Leq/Req. In the following problem does this method still apply.
I ask because when I looked at the solution in the book the equations were set up different and the final answer was merely approximated.
I took Leq = to be --- 2mH || 15 mH = 1.76mH
and Req = to be--- 12 ||72Ω = 10Ω
Is this correct, or do the resistors in series with the inductors prevent me from taking this approach.
The book created 2 different differential equations for the two separate branches (with different values of tau) and then added them together. I created 1 using the equivalent values. I got a similar answer but I'm wondering if that was a coincidence.
The problem:
A short circuit is dropped between points a and b.
a) Find the initial value of the current through ab.
b) What is the final value of the current.
c) How many millisecond after the short will the current(ab) equal 210?
My solution:
a) Iab(0) = Isc - Iold ; 220- 20 = 200
b) Iab(inf) = Isc = 220
c) .122 ms; book = .123 ms
Thank you.
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