MCQ
A body is projected vertically upward with speed $10 \,m / s$ and other at same time with same speed in downward direction from the top of a tower. The magnitude of acceleration of first body w.r.t. second is ...... $m / s ^2$ $\left\{\right.$ take $\left.g=10 \,m / s ^2\right\}$
  • $0$
  • B
    $10$
  • C
    $5$
  • D
    $20$

Answer

Correct option: A.
$0$
a
(a)

The acceleration of first body

$a_1=10 \,ms ^{-2}$

$a_2=10 \,ms ^{-2}$

$a_{ rel }=a_1-a_2=10 \,ms ^{-2}-10 \,ms ^{-2}=0$

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

A ray of light is incident on a transparent glass slab of refractive index $1.62$. The reflected and the refracted rays are mutually perpendicular. The angle of incidence is.......$^o$
In the given figure each plate of capacitance $C$ has partial value of charge
For a reversible process, necessary condition is
A body of mass $10$ kg slides along a rough horizontal surface. The coefficient of friction is $1/\sqrt 3 $. Taking $g = 10\,m/{s^2}$, the least force which acts at an angle of $30^o $ to the horizontal is ...... $N$
A Zener of breakdown voltage $V_{z}=8\,V$ and maximum zener current, $I _{ ZM }=10\,mA$ is subjected to an input voltage $V _{ i }=10\,V$ with series resistance $R=100\,\Omega$. In the given circuit $R_{L}$ represents the variable load resistance. The ratio of maximum and minimum value of $R_{L}$ is
If $x=5 \sin \left(\pi t+\frac{\pi}{3}\right) \mathrm{m}$ represents the motion of a particle executing simple harmonic motion, the amplitude and time period of motion, respectively, are
An ideal gas is made to undergo the cyclic process shown in the figure below. Let $\Delta W$ depict the work done, $\Delta U$ be the change in internal energy of the gas and $Q$ be the heat added to the gas. Sign of each of these three quantities for the whole cycle will be (0 refers to no change)
For the given circuit the current $i$ through the battery when the key in closed and the steady state has been reached is .....$A$
A body of $2\, kg$ has an initial speed $5ms^{-1}$. A force acts on it for some time in the direction of motion. The force time graph is shown in figure. The final speed of the body.  .......... $m{s^{ - 1}}$
Given in the figure are two blocks $A$ and $B$ of weight $20\, N$ and $100\, N$, respectively. These are being pressed against a wall by a force $F$ such that the system does not slide as shown. If the coefficient of friction between the blocks is $0.1$ and between block $B$ and the wall is $0.15$, the frictional force applied by the wall on block $B$ is ........ $N$