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A particle moving with uniform acceleration along a straight line covers distances and in successive time intervals and . Which equation correctly relates these quantities?
S_2t_1 - S_1t_2 = a(t_1+t_2)
S_2/t_2 - S_1/t_1 = a(t_1+t_2)/2
S_2t_1 + S_1t_2 = a(t_1+t_2)
S_2/t_1 - S_1/t_2 = a(t_1+t_2)/2
If a car starts from rest and accelerates at 2 m/sΒ² for 5 seconds, what will be its final velocity?
2 m/s
5 m/s
10 m/s
20 m/s
A train started from rest from a station and accelerated at for 10sec. Then it travels at constant speed for 30 sec and there after it decelerated at until it stopped at the next station. The distance between two stations is
650 m
700 m
750 m
800 m
A train started from rest from a station and accelerated at for 10sec. Then it travels at constant speed for 30 sec and there after it decelerated at until it stopped at the next station. The distance between two stations is
650 m
700 m
750 m
800 m
A body starts from rest, with uniform acceleration. If its velocity after n seconds is v,then its displacement in the last two seconds is
Water drops fall at regular intervals from a tap which is 5 m above the ground. The third drop is leaving the tap at the instant the first drop touches the ground. How far above the ground is the second drop at that instant
2.50 m
3.75 m
4.00 m
1.25 m
A particle starts from rest, acceleration at for 10 s and then goes with constant speed for 30 s and then decelerates at till it stops. What is the distance travelled by it
750 m
800 m
700 m
850 m
A stone falls from a balloon that is descending at a uniform rate of . The displacement of the stone from the point of release after 10s is
725 m
610 m
510 m
490 m
An object accelerates from rest to a velocity in 10 s, then the distance covered after next 10 s is
550 m
137.5 m
412.5 m
175 m