MCQ
A particle is projected vertically upwards from a point $A$ on the ground. It takes time $t_1$ to  reach a point $B$, but it still continues to move up. If it takes further $t_2$ time to reach the  ground from point $B$. Then height of point $B$ from the ground is-
  • A
    $\frac{1}{2} g(t_1 + t_2)^2$
  • B
    $g\, t_1\, t_2$
  • C
    $\frac{1}{8} g(t_1 + t_2)^2$
  • $\frac{1}{2} g t_1 \, t_2$

Answer

Correct option: D.
$\frac{1}{2} g t_1 \, t_2$
d
$\mathrm{h}=\mathrm{ut}_{1}-\frac{1}{2} \mathrm{gt}_{1}^{2}$

$\mathrm{O}=\mathrm{u}\left(\mathrm{t}_{1}+\mathrm{t}_{2}\right)-\frac{1}{2} \mathrm{g}\left(\mathrm{t}_{1}+\mathrm{t}_{2}\right)^{2}$

so $\mathrm{u}=\mathrm{g}\left(\frac{\mathrm{t}_{1}+\mathrm{t}_{2}}{2}\right)$

$\mathrm{h}=\mathrm{g}\left(\frac{\mathrm{t}_{1}+\mathrm{t}_{2}}{2}\right) \mathrm{t}_{1}-\frac{1}{2} \mathrm{gt}_{1}^{2}$

$=\frac{\mathrm{gt}_{1} \mathrm{t}_{2}}{2}$

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 vectors $\vec P = a\hat i + a\hat j + 3\hat k$ and $\vec Q = a\hat i - 2\hat j - \hat k$ are perpendicular to each other then the positive value of $a$ is
If in a stationary lift, a man is standing with a bucket full of water, having a hole at its bottom. The rate of flow of water through this hole is ${R_0}.$ If the lift starts to move up and down with same acceleration and then that rates of flow of water are ${R_u}$ and ${R_d},$ then
The heat engine with maximum efficiency is:
According to the kinetic theory of gases, the pressure exerted by a gas on the wall of the container is measured as:
Fundamental frequency of an open pipe of length $0.5 m$ is equal to the frequency of the first overtone of a closed pipe of length $l$. The value of $l_c$ is $(m)$
The amplitude modulated (AM) radio wave bends appreciably round the corners of a 1m × 1m board but the frequency modulated (FM) wave only negligibly bends. If the average wavelengths of AM and FM waves are $\lambda_\text{a}$ and $\lambda_\text{f}:$

  1. $\lambda_\text{a}>\lambda_\text{f}$

  2. $\lambda_\text{a}=\lambda_\text{f}$

  3. $\lambda_\text{a}<\lambda_\text{f}$

  4. We don't have sufficient information to decide about the relation of $\lambda_\text{a}$ and $\lambda_\text{f}$

Two seconds after projection a projectile is travelling in a direction inclined at $30^o$ to  horizontal, after one more second it is travelling horizontally. What is the magnitude and  direction of its velocity at initial point
Which of the following is the longitudinal wave
A room is maintained at ${20^o}C$ by a heater of resistance $20$ ohm connected to $200$ volt mains. The temperature is uniform through out the room and heat is transmitted through a glass window of area $1{m^2}$ and thickness $0.2$ cm. What will be the temperature outside ....... $^oC$ ? Given that thermal conductivity $K=0.2$ for glass is and $J = 4.2 J/cal$
A bullet fired into a fixed target loses half of its velocity after penetrating $3\,cm$. How much further it will penetrate before coming to rest assuming that it faces constant resistance to motion?........$cm$