The equivalent resistance of the circuit shown below between points $a$ and $b$ is $..........\Omega$
  • A$24$
  • B$3.2$
  • C$20$
  • D$16$
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
    Three resistors are connected to form the sides of a triangle $ABC$, the resistance of the sides $AB$, $BC$ and $CA$ are $40\,ohms$, $60\,ohms$ and $100\,ohms$ respectively. The effective resistance between the points $A$ and $B$ in $ohms$ will be
    View Solution
  • 2
    The current from the battery in circuit diagram shown is .............. $A$
    View Solution
  • 3
    A wire of resistance $R_{1}$ is drawn out so that its length is increased by twice of its original length.The ratio of new resistance to original resistance is.
    View Solution
  • 4
    Two students $P$ and $Q$ perform an experiment to verify Ohm's law for a conductor with resistance $R$. They use a current source and a voltmeter with least counts of $0.1 mA$ and $0.1 \,mV$, respectively. The plots of the variation of voltage drop $V$ across $R$ with current $I$ for both are shown below. The statement which is most likely to be correct?
    View Solution
  • 5
    In a thin rectangular metallic strip a constant current $I$ flows along the positive $x$-direction, as shown in the figure. The length, width and thickness of the strip are $\ell$, w and $d$, respectively. A uniform magnetic field $\vec{B}$ is applied on the strip along the positive $y$-direction. Due to this, the charge carriers experience a net deflection along the $z$ direction. This results in accumulation of charge carriers on the surface $P Q R S$ and appearance of equal and opposite charges on the face opposite to $PQRS$. A potential difference along the $z$-direction is thus developed. Charge accumulation continues until the magnetic force is balanced by the electric force. The current is assumed to be uniformly distributed on the cross section of the strip and carried by electrons.

    $1.$ Consider two different metallic strips ($1$ and $2$) of the same material. Their lengths are the same, widths are $w_1$ and $w_2$ and thicknesses are $d_1$ and $d_2$, respectively. Two points $K$ and $M$ are symmetrically located on the opposite faces parallel to the $x$ - $y$ plane (see figure). $V _1$ and $V _2$ are the potential differences between $K$ and $M$ in strips $1$ and $2$ , respectively. Then, for a given current $I$ flowing through them in a given magnetic field strength $B$, the correct statement$(s)$ is(are)

    $(A)$ If $w _1= w _2$ and $d _1=2 d _2$, then $V _2=2 V _1$

    $(B)$ If $w_1=w_2$ and $d_1=2 d_2$, then $V_2=V_1$

    $(C)$ If $w _1=2 w _2$ and $d _1= d _2$, then $V _2=2 V _1$

    $(D)$ If $w _1=2 w _2$ and $d _1= d _2$, then $V _2= V _1$

    $2.$ Consider two different metallic strips ($1$ and $2$) of same dimensions (lengths $\ell$, width w and thickness $d$ ) with carrier densities $n_1$ and $n_2$, respectively. Strip $1$ is placed in magnetic field $B_1$ and strip $2$ is placed in magnetic field $B_2$, both along positive $y$-directions. Then $V_1$ and $V_2$ are the potential differences developed between $K$ and $M$ in strips $1$ and $2$, respectively. Assuming that the current $I$ is the same for both the strips, the correct option$(s)$ is(are)

    $(A)$ If $B_1=B_2$ and $n_1=2 n_2$, then $V_2=2 V_1$

    $(B)$ If $B_1=B_2$ and $n_1=2 n_2$, then $V_2=V_1$

    $(C)$ If $B _1=2 B _2$ and $n _1= n _2$, then $V _2=0.5 V _1$

    $(D)$ If $B_1=2 B_2$ and $n_1=n_2$, then $V_2=V_1$

    Give the answer question $1$ and $2.$ 

    View Solution
  • 6
    Four wires $AB,\,\,BC,\,\,CD,\,\,DA$ of resistance $4\, \Omega$ each and a fifth wire $BD$ of resistance $8\, \Omega$ are joined to form a rectangle $ABCD$ of which $BD$ is a diagonal. The effective resistance between the points $A$ and $B$ is
    View Solution
  • 7
    The magnitude of $i$ in ampere unit is
    View Solution
  • 8
    The equivalent resistance between points $A$ and $B$ in the given network is ............ $\Omega$
    View Solution
  • 9
    The resistance of a wire of iron is $10\, ohms$ and temp. coefficient of resistivity is $5 \times {10^{ - 3}}\,^oC$. At $20\,^oC$ it carries $30$ milliamperes of current. Keeping constant potential difference between its ends, the temperature of the wire is raised to $120\,^oC$. The current in milliamperes that flows in the wire is
    View Solution
  • 10
    A wire of resistance $160\,\Omega$ is melted and drawn in wire of one-fourth of its length. The new resistance of the wire will be $......\Omega$
    View Solution