00:01
In the first part of this problem, we have to calculate the voltage across the capacitor, that is v.
00:07
In order to calculate this voltage, let's write a relation for the energy storage in the capacitor as u equals to 1 over 2, cv square, where the c is the capacitance of the capacitor.
00:19
Now, so in this question for v, we can write this relation as a v equals to square root of 2 u divided by c, let's call it equation number 1.
00:30
Now when setting values into the square we can write v equals to square root of 2 into we have the value for you as 91050 jowl divided by c as 100 multiplied by 10x power minus 6 ferrat.
00:49
So this will give you the value for v as v equals to 4 .39 multiplied terence power 3 volt.
00:59
Or it can be written as v equals to 4 .39 kilowalt.
01:07
So this is the required answer.
01:14
Now in part b of this problem, we have to calculate the power delivered by the capacitor, that is p...