Two particles A and B are moving in a uniform circular motion in concentric circles of radii rA and rB with speeds vA and vB respectively. Their time periods of rotation are the same. The ratio of the angular speed of A to that of B will be:
1. | 1:1 | 2. | rA:rB |
3. | vA:vB | 4. | rB:rA |
A particle starts from rest at t=0 and undergoes an acceleration a in ms-2 with time t in second which is as shown
Which one of the following plot represents velocity v in ms-1 versus time t in second?
1.
2.
3.
4.
A particle starts from rest. Its acceleration (a) versus time (t) is as shown in the figure. The maximum speed of the particle will be
1. 110 ms-1
2. 55 ms-1
3. 550 ms-1
4. 660 ms-1
The given graph shows the variation of velocity with displacement. Which one of the graph given below correctly represents the variation of acceleration with displacement?
1.
2.
3.
4.
A particle moves along a parabolic path y=9x2 in such a way that the x component of the velocity remains constant and has a value of 13 m/s. It can be deduced that the acceleration of the particle will be:
1. 13ˆj m/s2
2. 3ˆj m/s2
3. 23ˆj m/s2
4. 2ˆj m/s2
The relation between time and distance is t=αx2+βx, where α and β are constants. The retardation is
1. 2αv3
2. 2βv3
3. 2αβv3
4. 2β2v3
A point moves in a straight line under the retardation av2. If the initial velocity is u, the distance covered in 't' second is-
1. aut
2. 1aln (aut)
3. 1aln (1+aut)
4. a ln (aut)
The speed of a swimmer in still water is 20 m/s. The speed of river water is 10 m/s and is flowing due east. If he is standing on the south bank and wishes to cross the river along the shortest path, the angle at which he should make his strokes with respect to the north is given by:
1. | 45∘ west of north | 2. | 30∘ west of north |
3. | 0∘ west of north | 4. | 60∘ west of north |
A car turns at a constant speed on a circular track of radius 100 m, taking 62.8 s for every circular lap. The average velocity and average speed for each circular lap, respectively, is:
1. | 0, 0 | 2. | 0, 10 m/s, |
3. | 10 m/s, 10 m/s, | 4. | 10 m/s, 0 |
For a projectile projected at angles (45∘−θ) and (45∘+θ), the horizontal ranges described by the projectile are in the ratio of:
1. 1:1
2. 2:3
3. 1:2
4. 2:1