Question
Question: Calculate the equivalent capacitance between points A and B in the circuit below. If a battery of \(...
Calculate the equivalent capacitance between points A and B in the circuit below. If a battery of 10V is connected across A and B, calculate the charge drawn from the battery by the circuit.
Solution
here, in the given diagram two series combinations are connected parallel to each other. Therefore, we will use the formula of the capacitance to calculate the capacitance in both combinations. Then, we will use the formula of net capacitance to calculate the equivalent capacitance between points A and B.
Complete step by step answer:
The circuit given in the question represents the wheatstone bridge. A Wheatstone bridge is defined as an electrical circuit that is used to measure an unknown resistance which is done by balancing two legs of a bridge circuit and one leg of which includes the unknown component. Here, C1=10μF , C2=20μF , C3=5μF , C4=10μF and C5=50μF .
Therefore, we can say that in the capacitance C5=50μF , there will be no passage of current.
Now, we can see in the diagram that there are two series combinations that are connected parallel to each other.
Therefore, the net capacitance of the upper series combination consisting of capacitors C1 and C2 is shown below
C1,21=C11+C21
Now, putting the values of C1 and C2 , we get
C1,21=101+201
⇒C1,21=202+1
⇒C1,21=203
⇒C1,2=320
Also, the net capacitance of the lower series combination consisting of capacitors C3 and C4 is given below
C3,41=C31+C41
Now, putting the values of C3 and C4 , we get
C3,41=51+101
⇒C3,41=102+1
⇒C3,41=103
⇒C3,4=310
Now, the equivalent capacitance can be calculated by taking the sum of the net capacitance of both the series upper and lower series combination and is shown below
Cnet=C1,2+C3,4
⇒Cnet=320+310
⇒Cnet=330
⇒Cnet=10μF
This is the required value.
Therefore, the equivalent capacitance between points A and B is 10μF .
Note:
Here we have not used the value of the fifth capacitor C5 in the solution.
This is because in the case of Wheatstone bridge one component in the circuit is unknown, that is there will be no passage of current.
Therefore, in this case, there will be no passage of current through the capacitor C5 .