00:01
Now, here in this question, you look at the transfer function of a circuit, right? the transfer function normally is written as h .j.
00:09
Omega, which is, basically, it's defined as, suppose you have an input voltage, something like this, input voltage, right? v -input, and then you go through a circuit, and you get some output voltage.
00:21
We owe, and then basically, v or over v -in is defined as the transfer function.
00:27
Of course, this trans function includes everything about the circuit.
00:33
You ask, how do you get to the high frequency limit? how do you get high frequency behavior of the circuit from the transplants? of course, you need to send ormary to a bit.
00:48
So you're giving four choices.
00:51
Let's see which one's correct.
00:52
The first is find the term with highest part of omega and the numerator and denominator.
00:56
And denominator, eliminate other terms, simple the function, and take the limit as omega into infinite...