Kinematics-2D

244 Questions Start Advance Test
Q26 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A hollow vertical cylinder of radius $r$ and height $h$ has a smooth internal surface. A small particle is placed in contact with the inner side of the upper rim, at point $A$ and given a horizontal speed $u$ , tangential to the rim. It leaves the lower rim at point $B$ , vertically below $A$ . If $n$ is an integer then
A.
$\frac{u}{2\pi r}\sqrt{\frac{2h}{g}} = n$
B.
$\frac{h}{2\pi r} = n$
C.
$\frac{2\pi r}{h} = n$
D.
$\frac{u}{\sqrt{2gh}} = n$
Q27 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A ball is projected so as to pass a wall at a distance $a$ from the point of projection at an angle of $45^{\circ}$ and falls at a distance $b$ on the other side of the wall. If $h$ is the height of the wall then
A.
$h = a\sqrt{2}$
B.
$h = b\sqrt{2}$
C.
$h = \frac{\sqrt{2}ab}{a + b}$
D.
$h = \frac{ab}{a + b}$
Q28 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A boy wants to throw a ball from a point $A$ so as to just clear the obstruction at $B$ . The minimum horizontal velocity with which the boy should throw the ball is
A.
$23.5\mathrm{ms}^{-1}$
B.
$235\mathrm{ms}^{-1}$
C.
$47\mathrm{ms}^{-1}$
D.
$32.5\mathrm{ms}^{-1}$
Q29 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A ball is thrown vertically upward with a speed $v$ from a point $h$ metre above the ground. The time taken for the ball to hit the ground is
A.
$\left(\frac{v}{g}\right)\left(1+\sqrt{1+\frac{2hg}{v^2}}\right)$
B.
$\sqrt{1+\left(\frac{2hg}{v^2}\right)}$
C.
$\left(\frac{v}{g}\right)\sqrt{1+\left(\frac{2hg}{v^{2'}}\right)}$
D.
$\left(\frac{v}{g}\right)\sqrt{1-\left(\frac{2hg}{v^2}\right)}$
Q30 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
The muzzle velocity for a certain rifle is $600 \, ms^{-1}$ . If the rifle is pointed vertically upward and fired from an automobile moving horizontally at a speed of $72 \, kmh^{-1}$ , the radius of curvature of the path of the bullet at maximum altitude is (neglect friction of the air and take $g = 10 \, ms^{-2}$ )
A.
400 m
B.
200 m
C.
40 m
D.
20 m
Q31 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle starts from the origin of co-ordinates at time t = 0 and moves in the xy plane with a constant acceleration $\alpha$ in the y-direction. Its equation of motion is $y = \beta x^{2}$ . Its velocity component in the x-direction is
A.
$\frac{\alpha}{2\beta}$
B.
$\sqrt{\frac{\alpha}{2\beta}}$
C.
$\sqrt{\frac{2\alpha}{\beta}}$
D.
not constant
Q32 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
The speed of a projectile $u$ reduces by $50\%$ on reaching maximum height. The range on the horizontal plane is
A.
$\frac{2u^2}{3g}$
B.
$\frac{u^2}{g}$
C.
$\frac{\sqrt{3}u^2}{2g}$
D.
$\frac{3u^2}{g}$
Q33 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
It is observed that a projectile is at the same height at 3 s and 5 s from the start. The time of flight of the projectile is equal to
A.
1 s
B.
2 s
C.
4 s
D.
8 s
Q34 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A helicopter ascending at the rate of $12 \, ms^{-1}$ drops a food packet from a height of 80 m above the ground. The time the packet takes to reach the ground is
A.
2.7 s
B.
5.5 s
C.
11 s
D.
16.5 s
Q35 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A ball is thrown from the top of a staircase which just touches the ceiling and finally hits the bottom of the steps. The initial speed of the ball is
A.
$6.3\mathrm{ms}^{-1}$
B.
$7.6\mathrm{ms}^{-1}$
C.
$63\mathrm{ms}^{-1}$
D.
$76\mathrm{ms}^{-1}$
Q36 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A stone is projected with a velocity of $10 \, ms^{-1}$ at $60^\circ$ to the horizontal. At any instant, the angles of elevation of the stone from the two extremities of the range are $\alpha$ and $\beta$ . Then $\tan \alpha + \tan \beta$ equals
A.
$\frac{1}{\sqrt{3}}$
B.
$\frac{1}{3}$
C.
3
D.
$\sqrt{3}$
Q37 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle is projected from the ground with a speed of $20 \, ms^{-1}$ making an angle of $60^\circ$ with the horizontal. The radius of curvature of the path of the particle, when its velocity makes an angle of $30^\circ$ with horizontal is $(g = 10 \, \text{ms}^{-2})$
A.
10.6 m
B.
12.8 m
C.
15.4 m
D.
24.2 m
Q38 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle is projected with a certain velocity at an angle $\alpha$ above the horizontal from the foot of an inclined plane of inclination $30^{\circ}$ . If the particle strikes the plane normally then $\alpha$ is equal to
A.
$30^{\circ} + \tan^{-1}\left(\frac{1}{2\sqrt{3}}\right)$
B.
$30^{\circ} + \tan^{-1}\left(2\sqrt{3}\right)$
C.
$60^{\circ}$
D.
$30^{\circ} + \tan^{-1}\left(\frac{\sqrt{3}}{2}\right)$
Q39 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle moves along a parabolic path $y = 9x^{2}$ in such a way that the x component of velocity remains constant and has a value $\frac{1}{3} ms^{-1}$ . The acceleration of the particle is
A.
$\frac{1}{3}\hat{j}ms^{-2}$
B.
$3\hat{j}ms^{-2}$
C.
$\frac{2}{3}\hat{j}ms^{-2}$
D.
$2\hat{j}ms^{-2}$
Q40 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle moves along a circle of radius R = 2 m so that its radius vector $\vec{r}$ relative to a point on its circumference rotates with the constant angular velocity $\omega = 2 \, rads^{-1}$ . The linear speed of the particle is
A.
$4\mathrm{ms}^{-1}$
B.
$2\mathrm{ms}^{-1}$
C.
$1\mathrm{ms}^{-1}$
D.
$8\mathrm{ms}^{-1}$
Q41 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
For two projectiles launched with same initial velocity, the maximum heights corresponding to equal ranges are 4 m and 16 m. The range has a value
A.
4 m
B.
8 m
C.
16 m
D.
32 m
Q42 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
When a particle is moving along a circular path with uniform speed, it has
A.
radial velocity and radial acceleration
B.
radial velocity and transverse acceleration
C.
transverse velocity and radial acceleration
D.
transverse velocity and transverse acceleration
Q43 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A particle moves in the xy plane with constant acceleration a directed along the negative y-axis. The equation of motion of the particle has the form $y = \alpha x - \beta x^{2}$ , where $\alpha$ and $\beta$ are positive constants. The velocity of the particle at the origin of coordinates is
A.
$\sqrt{a\left(\frac{\alpha^2 + 1}{2\beta}\right)}$
B.
$\sqrt{a\left(\frac{\beta + 1}{2\alpha^2}\right)}$
C.
$\sqrt{a\left(\frac{\alpha^2 + 1}{4\beta}\right)}$
D.
$\sqrt{a\left(\frac{\beta + 1}{4\alpha^2}\right)}$
Q44 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A body of mass m thrown horizontally with velocity v from the top of the tower of height h touches the ground at a distance of 250 m from the foot of the tower. A body of mass 2m thrown with a velocity of $\frac{v}{2}$ from the top of the tower of height 4h will touch the ground at a distance of
A.
250 m
B.
500 m
C.
1000 m
D.
125 m
Q45 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
Two particles A and B are connected by a rigid rod AB. The rod slides along perpendicular rails as shown here. The velocity of A to the left is $10 \, ms^{-1}$ . The speed of B when angle $\theta = 45^{\circ}$ is
A.
$5\mathrm{ms}^{-1}$
B.
$5\sqrt{2}\mathrm{ms}^{-1}$
C.
$7.5\mathrm{ms}^{-1}$
D.
$10\mathrm{ms}^{-1}$
Q46 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A stone is projected so as to pass two walls of heights $a$ and $b$ at distances $b$ and $a$ respectively from the point of projection. If $\alpha$ is the angle of projection then
A.
minimum value of tan $\alpha$ is $\sqrt{3}$ .
B.
minimum value of tan $\alpha$ is 3.
C.
maximum value of tan $\alpha$ is $\sqrt{3}$ .
D.
maximum value of tan $\alpha$ is 3.
Q47 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
Two stones are projected so as to reach the same distance from the point of projection on a horizontal surface. The maximum height reached by one exceeds the other by an amount equal to half the sum of the heights attained by them. Then the angles of projection for the stones are
A.
$45^{\circ}, 135^{\circ}$
B.
$0^{\circ}, 90^{\circ}$
C.
$30^{\circ}, 60^{\circ}$
D.
$20^{\circ}, 70^{\circ}$
Q48 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
Two particles are projected from a point at the same instant with velocities whose horizontal components and vertical components are $(u_{1}, v_{1})$ and $(u_{2}, v_{2})$ , respectively. The time interval between their passing through the other common point of their path (other than origin) is
A.
$\frac{2}{g}\left(\frac{v_1u_1 - v_2u_2}{u_1 + u_2}\right)$
B.
$\frac{2}{g}\left(\frac{v_1^2 + v_2^2}{u_1 + u_2}\right)$
C.
$\frac{2}{g}\left(\frac{u_1^2 + u_2^2}{v_1 + v_2}\right)$
D.
$\frac{2}{g}\left(\frac{v_1u_2 - v_2u_1}{u_1 + u_2}\right)$
Q49 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A pendulum of length $l = 1 \, \text{m}$ is released from $\theta_0 = 60^\circ$ . The rate of change of speed of the bob at $\theta = 30^\circ$ is $(g = 10 \, \text{ms}^{-2})$
A.
$2.5\mathrm{ms}^{-2}$
B.
$5\mathrm{ms}^{-2}$
C.
$5\sqrt{3}\mathrm{ms}^{-2}$
D.
$10\mathrm{ms}^{-2}$
Q50 Advance 1. SINGLE CORRECT CHOICE TYPE QUESTIONS MCQ
A projectile is thrown in a viscous medium offering resistance equal to one-tenth of acceleration due to gravity. The time of flight of projectile will
A.
increase by 1%
B.
decrease by 1%
C.
increase by 2%
D.
decrease by 2%