MCQ
Which of the following logic gates is an universal gate?
  • A
    $\text{OR}$
  • B
    $\text{NOT}$
  • C
    $\text{AND}$
  • $\text{NOR}$

Answer

Correct option: D.
$\text{NOR}$
$\text{NAND}$ gate is considered universal gate. As other gates can be formed from this gate.

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Electric charge is uniformly distributed along a long straight wire of radius $1\, mm$. The charge per $cm$ length of the wire is $Q$ $coulomb$. Another cylindrical surface of radius $50$ $cm$ and length $1\,m$ symmetrically encloses the wire as shown in the figure. The total electric flux passing through the cylindrical surface is
A bar magnet of length 10 cm and having the pole strength equal to $10^{-3}$ weber is kept in a magnetic field having magnetic induction (B) equal to $4 \pi \times 10^{-3}$ Tesla. It makes an angle of 30$^\circ$ with the direction of magnetic induction. The value of the torque acting on the magnet is
$\left(\mu_0=4 \pi \times 10^{-7}\right.$ weber/amp $\left.\times \mathrm{m}\right)$
The current in a conductor is expressed as $I=3 t^2+4 t^3$, where $I$ is in Ampere and $t$ is in second. The amount of electric charge that flows through a section of the conductor during $t=1$ s to $t=2 \mathrm{~s}$ is_______ C.
An electromagnetic wave going through vacuum is described by $E = {E_0}\sin (kx - \omega \,t)$; $B = {B_0}\sin (kx - \omega \,t)$. Which of the following equation is true
A 10 pF capacitor is connected to a 50 V battery. How much electrostatic energy is stored in the capacitor
For what value of the resistor $X$ will the equivalent resistance of the two circuits shown be the same?
Two conductors have the same resistances at $0^{\circ} \mathrm{C}$ but their temperature coefficients of resistance are $\alpha_1$ and $\alpha_2$. The respective temperature coefficients for their series and parallel combinations are :
The energy density associated with electric field $\overrightarrow{ E }$ and magnetic field $B$ of an electromagnetic wave in free space is given by ( $\in_0-$ permittivity of free space, $\mu_0$ - permeability of free space)
An ac generator consists of a coil of $200$ turns, $100\ cm$ in diameter. If the coil rotates at$ 500$ rpm in a magnetic field of $0.25T,$ then the maximum induced emf.
A capacitor stores $60\ \mu C$ charge when connected across a battery. When the gap between the plates is filled with a dielectric , a charge of $120\ \mu C$ flows through the battery , if the initial capacitance of the capacitor was $2\ \mu F$, the amount of heat produced when the dielectric is inserted.......$\mu J$