Question
Identify the logic gates marked 'P' and 'Q' in the given circuit. Write the truth table for the combination.

Answer

P: NAND Gate
Q: OR Gate
Truth Table
Input Output
A B X
0 0 1
1 0 1
0 1 1
1 1 1

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

Prove $n_e \cdot n_h=n_i^2$ for $n-$ type and $p-$ type semiconductors where,
$n_e - $number density of electrons
$n_h - $ number density of holes
$n_i -$ number density of intrinsic charge carriers
A rectangular coil of 100 turns has length 5cm and width 4cm. It is placed with its plane parallel to a uniform magnetic field and a current of 2A is sent through the coil. Find the magnitude of the magnetic field B if the torque acting on the coil is $0.2N\  m^{-1}.$
Estimate the average drift speed of conduction electrons in a copper wire of cross-sectional area $1.0 \times 10^{-7} \mathrm{~m}^2$ carrying a current of 1.5 A . Assume the density of conduction electrons to be $9 \times 10^{28} \mathrm{~m}^{-3}$.
A light bulb and an open coil inductor are connected to an ac source through a key as shown in Fig. 7.9.
Image
The switch is closed and after sometime, an iron rod is inserted into the interior of the inductor. The glow of the light bulb (a) increases; (b) decreases; (c) is unchanged, as the iron rod is inserted. Give your answer with reasons.
How does the energy stored in a capacitor change if the plates of a charged capacitor are moved farther, the battery remaining connected?
Which one of the following will describe the smallest circle when projected with the same velocity $v$ perpendicular to the magnetic field $B: (i)\ \alpha-$particle, and $(ii)\ \beta-$particle?
A 100pF capacitor is charged to a potential difference of 24V. It is connected to an uncharged capacitor of capacitance 20pF. What will be the new potential difference across the 100pF capacitor?
A potential difference of 12 volt is applied across the ends of 0.24 m long conductor. Calculate the drift velocity of the electrons. Mobility of electron is $5.6 \times 10^{-6} m^2 V^{-1} s^{-1}$.
The plates of a parallel-plate capacitor are made of circular discs of radii 5.0cm each. If the separation between the plates is 1.0mm, what is the capacitance?
Find the area enclosed by the curve $\text{y}=\sin\text{x}$ and the X-axis between $\text{x}=0$ and $\text{x}=\pi.$