For complex circuits, use series-parallel combinations or delta-star transforma tions to simplify the circuit before calculating the equivalent resistance.
6.4 Ω
4Ω
3.2Ω
8Ω
For a balanced Wheatstone Bridge, the equivalent resistance between points \( a \) and \( b \) is given by:
\[ \frac{1}{R_{ab}} = \frac{1}{16} + \frac{1}{8} + \frac{1}{8} \]
Combine the terms by finding a common denominator:
\[ \frac{1}{R_{ab}} = \frac{1}{16} + \frac{2}{16} + \frac{2}{16} \]
\[ \frac{1}{R_{ab}} = \frac{5}{16} \]
Take the reciprocal to calculate \( R_{ab} \):
\[ R_{ab} = \frac{16}{5} = 3.2 \, \Omega \]
The equivalent resistance between points \( a \) and \( b \) is:
\( R_{ab} = 3.2 \, \Omega \)
The graph between variation of resistance of a wire as a function of its diameter keeping other parameters like length and temperature constant is
A wire of resistance $ R $ is bent into a triangular pyramid as shown in the figure, with each segment having the same length. The resistance between points $ A $ and $ B $ is $ \frac{R}{n} $. The value of $ n $ is:
Match List-I with List-II.
Choose the correct answer from the options given below :
Resistance is the measure of opposition applied by any object to the flow of electric current. A resistor is an electronic constituent that is used in the circuit with the purpose of offering that specific amount of resistance.
R=V/I
In this case,
v = Voltage across its ends
I = Current flowing through it
All materials resist current flow to some degree. They fall into one of two broad categories:
Resistance measurements are normally taken to indicate the condition of a component or a circuit.