Q226
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
Two particles A and B are thrown up simultaneously from the edge of a cliff with initial speeds v and 2v. Assuming that the particle A comes to rest immediately after striking the ground, the variation in relative position of the particle B with respect to the particle A with time, till both the stones strike the ground is plotted. This variation plot is
A.
only linear
B.
only parabolic
C.
first parabolic then linear
D.
first linear then parabolic
Q227
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A dog is chasing a cat who is running along a straight line at constant speed $u$ . The dog moves with a constant speed $v$ , always heading towards the cat. Initially i.e. at $t = 0$ , the velocities of dog and cat are perpendicular and the initial perpendicular distance between them is $l$ . The dog catches the cat at
A.
$t = \frac{lv}{v^2 - u^2}$ for $v > u$
B.
$t = \frac{lv}{u^2 - v^2}$ for $u > v$
C.
$t = \frac{lv^2}{\sqrt{v^2 - u^2}}$ for $v > u$
D.
$t = \frac{lv^2}{\sqrt{u^2 - v^2}}$ for $u > v$
Q228
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The acceleration is constant when the relationship between the
A.
position coordinate $s$ and the square of the velocity $v$ is linear
B.
position coordinate $s$ and the velocity $v$ is linear
C.
position coordinate and the reciprocal of the velocity $v$ is linear
D.
square of the position coordinate s and the velocity v is linear
Q229
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
In travelling a distance of 3 kilometre between points A and D, a car is driven at $100 \, kmh^{-1}$ from A to B for t second and at $60 \, kmh^{-1}$ from C to D for t second. If the brakes are applied for 4 second between B and C to give the car a uniform deceleration, the value of t is
A.
75.5 second
B.
45.5 second
C.
65.5 second
D.
56.5 second
Q230
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A car is travelling on a straight road. The maximum velocity the car can attain is $24 \, ms^{-1}$ . The maximum acceleration and deceleration it can attain are $1 \, ms^{-2}$ and $4 \, ms^{-2}$ respectively. The shortest time the car takes to start from rest and come to rest in a distance of 200 metre is
A.
22.4 second
B.
33.6 second
C.
11.2 second
D.
5.6 second
Q231
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A person walks up a stalled escalator in 90 s. When standing on the same escalator, now moving, he is carried in 60 s. The time it would take him to walk up the moving escalator will be
A.
36 s
B.
18 s
C.
72 s
D.
27 s
Q232
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
Two particles, A and B move with constant velocities $\vec{v}_A$ and $\vec{v}_B$ . Initially their radius vectors are $\vec{r}_A$ and $\vec{r}_B$ . For the particles to collide the four vectors must be interrelated as
A.
$\vec{v}_A - \vec{v}_B = \vec{r}_A - \vec{r}_B$
B.
$\vec{v}_A = \vec{v}_B$ and $\vec{r}_A = \vec{r}_B$
C.
$\frac{\vec{v}_A + \vec{v}_B}{|\vec{v}_A + \vec{v}_B|} = \frac{\vec{r}_A + \vec{r}_B}{|\vec{r}_A + \vec{r}_B|}$
D.
$\frac{\vec{v}_B - \vec{v}_A}{|\vec{v}_B - \vec{v}_A|} = \frac{\vec{r}_A - \vec{r}_B}{|\vec{r}_A - \vec{r}_B|}$
Q233
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The cone falling with a speed $v_{0}$ strikes and penetrates the block of packing material. The acceleration of the cone after impact is $a = g - cx^{2}$ , where c is a positive constant and x is the penetration distance. If the maximum penetration depth is $x_{m}$ . Then c equals
A.
$\frac{2gx_m + v_0^2}{x_m^2}$
B.
$\frac{2gx_m - v_0^2}{x_m^2}$
C.
$\frac{6gx_m - 3v_0^2}{2x_m^3}$
D.
$\frac{6gx_m + 3v_0^2}{2x_m^3}$
Q234
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
Water drops fall at regular intervals from a roof. At an instant when a drop is about to leave the roof, the separations between 3 successive drops below the roof are in the ratio
A.
1:2:3
B.
1:4:9
C.
1:3:5
D.
1:5:13
Q235
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A particle has an initial velocity $\vec{u} = (6\hat{i} + 8\hat{j})\mathrm{ms}^{-1}$ and an acceleration of $\vec{a} = (0.8\hat{i} + 0.6\hat{j})\mathrm{ms}^{-2}$ . Its speed after $10\mathrm{s}$ is
A.
$20\mathrm{ms}^{-1}$
B.
$14\mathrm{ms}^{-1}$
C.
$14\sqrt{2}\mathrm{ms}^{-1}$
D.
$17\mathrm{ms}^{-1}$
Q236
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A car moves rectilinearly for 6 s with a velocity that varies with time as $|t-3|$ $ms^{-1}$ where t is in second.
The total distance moved by the car is
A.
3 m
B.
6 m
C.
9 m
D.
12 m
Q237
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The V-t curves for two different particle motions are shown. The corresponding displacement time curves, taking S=0 when t=0 for both instances will be
A.


B.


C.


D.


Q238
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The acceleration of a train between two stations 2 kilometre apart is shown in the figure. The maximum speed of the train is
A.
$30\mathrm{ms}^{-1}$
B.
$60\mathrm{ms}^{-1}$
C.
$90\mathrm{ms}^{-1}$
D.
$120\mathrm{ms}^{-1}$
Q239
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The acceleration is constant when the relationship between
A.
the square of the position coordinate $x$ and the velocity $v$ is linear
B.
the position coordinate $x$ and the reciprocal of the velocity is linear
C.
the position coordinate $x$ and velocity $v$ is linear
D.
the position coordinate $x$ and the square of the velocity $v$ is linear
Q240
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A particle moves along a horizontal straight line with a velocity-time relationship as shown in figure. The total distance moved by the particle is
A.
39 m
B.
13 m
C.
26 m
D.
2.6 m
Q241
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A train moves from one station to another in 2 hour, and its speed during the motion is shown in the graph. The maximum acceleration during the journey is
A.
$80\mathrm{kmh}^{-2}$
B.
$160\mathrm{kmh}^{-2}$
C.
$40\mathrm{kmh}^{-2}$
D.
$60\mathrm{kmh}^{-2}$
Q242
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The wind appears to blow from the north to a man moving in the north-east direction. When he doubles his velocity the wind appears to move in the direction $\cot^{-1}(2)$ east of north. The actual direction of the wind is
A.
$\sqrt{2} v$ towards east
B.
$\frac{v}{\sqrt{2}}$ towards west
C.
$\sqrt{2} v$ towards west
D.
$\frac{v}{\sqrt{2}}$ towards east
Q243
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A man drives a car from Y towards X at speed $60 \, kmh^{-1}$ . A car leaves station X for station Y every 10 min. The distance between X and Y is 60 km. The car travels at speed $60 \, kmh^{-1}$ . A man drives a car from Y towards X at speed $60 \, kmh^{-1}$ . If he starts at the moment when first car leaves station X. The number of cars he would meet on route is
A.
5
B.
7
C.
10
D.
20
Q244
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A body falls from rest, in the last second of its fall, it covers half of the total distance. If $g$ is $9.8\mathrm{ms}^{-2}$ , then the total time of its fall is (in second)
A.
2
B.
$2 + \sqrt{2}$
C.
$2 - \sqrt{2}$
D.
$2 \pm \sqrt{2}$
Q245
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
The motion of a body falling from rest in a resisting medium is described by the equation $\frac{dv}{dt} = A - Bv$ where $A$ and $B$ are constants. The velocity at any time $t$ is
A.
$A(1 - e^{Bt})$
B.
$ABte^{-t}$
C.
$\frac{A}{B}(1 - e^{-Bt})$
D.
$AB^2(1 - e^{-Bt})$
Q246
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
In a car race, car A takes $t_{0}$ time less to finish than car B and passes the finishing point with a velocity $v_{0}$ more than car B. The cars start from rest and travel with constant accelerations $a_{1}$ and $a_{2}$ . Then the ratio $\frac{v_{0}}{t_{0}}$ is equal to
A.
$\frac{a_{1}+a_{2}}{2}$
B.
$\frac{a_{2}^{2}}{a_{1}}$
C.
$\frac{a_{1}^{2}}{a_{2}}$
D.
$\sqrt{a_{1}a_{2}}$
Q247
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A 2 m wide car is moving with a uniform speed of $8 \, ms^{-1}$ along the edge of a straight horizontal road. A pedestrian starts to cross the road with a speed v when the car is 12 m away from him. The minimum value of v for the pedestrian to cross the road safely is
A.
$\frac{4}{3} \, ms^{-1}$
B.
$\frac{3}{4} \, ms^{-1}$
C.
$\frac{1}{2} \, ms^{-1}$
D.
$\frac{1}{6} \, ms^{-1}$
Q248
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
In PROBLEM 81, if $\theta$ is the angle made by the velocity of the pedestrian with the road then
A.
$\tan \theta = 2$
B.
$\tan \theta = \frac{1}{6}$
C.
$\tan \theta = 6$
D.
$\tan \theta = \frac{1}{2}$
Q249
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
In PROBLEM 81, the time to cross the moving vehicle safely is
A.
$\frac{24}{37}\mathrm{s}$
B.
$\frac{37}{24}\mathrm{s}$
C.
$\frac{24}{49}\mathrm{s}$
D.
$\frac{3}{2}\mathrm{s}$
Q250
Advance
SINGLE CORRECT CHOICE TYPE QUESTIONS
MCQ
A proton in a cyclotron moves in a circle of radius 0.8 metre at a speed of $10^{7} \mathrm{~ms}^{-1}$ . The acceleration of the proton and acceleration due to gravity have a ratio of approximately
A.
$10^{10}$
B.
$10^{11}$
C.
$10^{13}$
D.
$10^{14}$





