The figure shows a tetrahedron, each side of which has a resistance $r$ Choose the correct diagram $(s),$ which show two-dimensional equivalent of the tetrahedron.
Advanced
Download our app for free and get startedPlay store
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
    If two electric bulbs have $40\,W$ and $60\,W$ rating at $220\,V$, then the ratio of their resistances will be
    View Solution
  • 2
    $E$ denotes electric field in a uniform conductor, $I$ corresponding current through it, ${v_d}$ drift velocity of electrons and $P$ denotes thermal power produced in the conductor, then which of the following graph is incorrect
    View Solution
  • 3
    A student has $10$ resistors of resistance ‘$r$’. The minimum resistance made by him from given resistors is
    View Solution
  • 4
    A $25\, watt$, $220\, volt$ bulb and a $100\, watt$,  $220\, volt$ bulb are connected in parallel across a $220\, volt$ line. Which bulb will glow more brightly
    View Solution
  • 5
    If $400\; \Omega$ of resistance is made by adding four $100\; \Omega$ resistance of tolerance $5 \%$ then the tolerance of the combination is .....$\%$
    View Solution
  • 6
    A $10\, ohm$ electric heater operates on a $110\, V$ line. Calculate the rate at which it develops heat in ............... $watts$
    View Solution
  • 7
    If ${V_{AB}} = 4\,V$ in the given figure, then resistance $X$ will be .............. $\Omega$
    View Solution
  • 8
    A battery of $24$ cells, each of emf $1.5\, V$ and internal resistance $2\, \Omega$ is to be connected in order to send the maximum current through a $12 \,\Omega$ resistor. The correct arrangement of cells will be
    View Solution
  • 9
    A uniform heating wire of resistance $36\, \Omega$ is connected across a potential difference of $240\, {V}$ The wire is then cut into half and potential difference of $240\, {V}$ is applied across each half separately. The ratio of power dissipation in first case to the total power dissipation in the second case would be $1: {x}$, where ${x}$ is........... .
    View Solution
  • 10
    The electric field $E$, current density $J$ and conductivity $\sigma$ of a conductor are related as
    View Solution