In the given circuit, the equivalent resistance between the terminal $A$ and $B$ is $........\Omega$.
  • A$1$
  • B$100$
  • C$65$
  • D$10$
JEE MAIN 2023, Medium
art

Download our app
and get started for free

Experience the future of education. Simply download our apps or reach out to us for more information. Let's shape the future of learning together!No signup needed.*

Similar Questions

  • 1
    In the given figure of meter bridge experiment, the balancing length $AC$ corresponding to null deflection of the galvanometer is $40\,cm$. The balancing length, if the radius of the wire $AB$ is doubled, will be $....cm$
    View Solution
  • 2
    In the circuit shown, the current in the $1\,\Omega$ resistor is
    View Solution
  • 3
    A source of $e.m.f.$  $E = 15\,V$ and having negligible internal resistance is connected to a variable resistance so that the current in the circuit increases with time as $i = 1.2 t + 3$. Then, the total charge that will flow in first five second will be ............... $C$
    View Solution
  • 4
    The circuit shown here is used to compare the $e.m.f.$ of two cells ${E_1}$ and ${E_2}({E_1} > {E_2})$. The null point is at $C$ when the galvanometer is connected to ${E_1}$. When the galvanometer is connected to ${E_2}$, the null point will be
    View Solution
  • 5
    Resistance across $A B$ as shown in figure is ............. $\Omega$
    View Solution
  • 6
    For the post office box arrangement to determine the value of unknown resistance the unknown resistance should be connected between
    View Solution
  • 7
    Which of the following statement is false
    View Solution
  • 8
    A battery has $e.m.f.$ $4\, V$ and internal resistance $r$. When this battery is connected to an external resistance of $2\, ohms$, a current of $1\, amp$. flows in the circuit. How much current will flow if the terminals of the battery are connected directly .......... $amp$
    View Solution
  • 9
    The equivalent resistance of the given circuit between the terminals ${A}$ and ${B}$ is  $....\Omega$
    View Solution
  • 10
    The terminal potential difference of a cell when short-circuited is ($E$ = $E.M.F.$ of the cell)
    View Solution