MCQ
If the vector is a unit vector in the direction of A. So
  • $\hat{n}=\frac{\vec{A}}{|\vec{A}|}$
  • B
    $\hat{n}=\frac{|\vec{A}|}{\vec{A}}$
  • C
    $\hat{n}=|\overrightarrow{ A }||\overrightarrow{ A }|$
  • D
    $\hat{n}=\hat{n} \times \overrightarrow{ A }$

Answer

Correct option: A.
$\hat{n}=\frac{\vec{A}}{|\vec{A}|}$
 (A)
$\begin{aligned}
\text { Unit vector } & =\frac{\text { Vector }}{\text { Magnitude of vector }} \\
\hat{n} & =\frac{\overrightarrow{A}}{|\overrightarrow{A}|}
\end{aligned}
$
Hence, the correct option is (A).

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

Statement$-1$ : Real gas approaches ideal gas behaviour for low pressures and high temperatures.
statement$-2 $: At low pressure, density of gas is very low.
At constant temperature, pressure is inversely proportional to volume is called as:
As the temperature is increased, the time period of a pendulum:
  1. Increases as its effective length increases even though its centre of mass still remains at the centre of the bob.
  2. Decreases as its effective length increases even though its centre of mass still remains at the centre of the bob.
  3. Increases as its effective length increases due to shifting of centre of mass below the centre of the bob.
  4. Decreases as its effective length remains same but the centre of mass shifts above the centre of the bob.
A source of sound $S$ of frequency $500 Hz$ situated between a stationary observer $O$ and a wall $W$, moves towards the wall with a speed of $2 m/s$. If the velocity of sound is $332 m/s$, then the number of beats per second heard by the observer is (approximately)
A stone is projected from a point on the ground so as to hit a bird on the top of a vertical pole of height $h$ and then attain a maximum height $2 h$ above the ground. If at the instant of projection the bird flies away horizontally with a uniform speed and if the stone hits the bird while descending, then the ratio of the speed of the bird to the horizontal speed of the stone is
The value of acceleration due to gravity at Earth’s surface is $9.8\, m\,s^{-2}$. The altitude above its surface at which the acceleration due to gravity decreases to $4.9\, m\,s^{-2}$, is close to: (Radius of earth $= 6.4\times10^6\, m$)
A pulley fixed to the ceiling carries a string with blocks of mass $m$ and $3m$ attached to its ends. The masses of string and pulley are negligible. When the system is released, it's center of mass moves with what acceleration
The unit of Young’s modulus is
A monoatomic gas of mass $4.0\, u$ is kept in an insulated container. Container is moving with velocity $30 \,m / s$. If container is suddenly stopped then change in temperature of the gas $\left( R =\right.$ gas constant) is $\frac{ x }{3 R } .$ Value of $x$ is ..........
The three vessels shown in fisure (13- Q2) have same base area. Equal volumes of a liquid are poured in the three vessels. The force on the base will be:

  1. Maximum in vessel A.
  2. Maximum in vessel B.
  3. Maximum in vessel C.
  4. Equal in all the vessels.