MCQ
In the Boolean algebra, the following one is wrong:
  • A
    $1.0 = 0$
  • B
    $0.1 = 0$
  • $1.1 = 0$
  • D
    $1.1 = 1$

Answer

Correct option: C.
$1.1 = 0$
In the Boolean algebra,
$1.0 = 0$
$0.1 = 0$
$1.1 = 1$

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

If the two ends of a p-n junction are joined by a wire:
Find the truth table for the function $Y$ and $A$ and $B$ represented in the following figure.
The resistance in the following circuit is increased at a particular instant. At this instant the value of resistance is 10W. The current in the circuit will be now
An electron having kinetic energy $T$ is moving in a circular orbit of radius $R$ perpendicular to a uniform magnetic induction $\vec B$ . If kinetic energy is doubled and magnetic induction tripled, the radius will become 
Two rays A and B being reflected by a mirror and going as A' and B'. The mirror:
A rectangular loop with a sliding connector of length $l = 1.0 \,m$ is situated in a uniform magnetic field $B = 2\,T$ perpendicular to the plane of loop. Resistance of connector is $r = 2$ $\Omega$ Two resistance of $6$ $\Omega$ and $3$ $\Omega$ are connected as shown in figure. The external force required to keep the connector moving with a constant velocity $v = 2\,m/s$ is........$N$
Two springs $A$ and $B(k_A= 2k_B)$ are stretched by applying forces of equal magnitudes at the four ends. If the energy stored in $A$ is $E,$ that in $B$ is:
In an experiment, the saturation in the plate current in a diode is observed at 240V. But a student still wants to increase the plate current. It can be done, if
A series $LCR$ circuit is connected to an $AC$ source of $220\,V , 50\,Hz$. The circuit contains a resistance $R =80\,\Omega$, an inductor of inductive reactance $X _{ L }=70\,\Omega$, and a capacitor of capacitive reactance $X _{ C }=130\,\Omega$. The power factor of circuit is $\frac{ X }{10}$. The value of $x$ is:
The figure shows a diagonal symmetric arrangement of capacitors and a battery. The potential of the point $B$ and $D$ are