100m is the lap radius.
Circumference = 2\(\pi\)R = 200\(\pi\) = 628 metres
It takes 62.8 seconds to complete one lap.
Consequently, average speed =\(\frac{62.8}{628}\) = 10 m/s.
After finishing a lap, the initial and end positions are the same, hence the average velocity is 0 (displacement = 0).
Therefore, the correct option is (B): 0, 10 m/s
After making one turn on a circular path, the displacement is zero and the distance traveled is 2πr.
Hence, \(\text{average velocity} = \frac{\text{time-interval}}{\text{displacement}} = \frac{t_0}{0} = 0\)
\(\text{Average speed} = \frac{\text{Time-interval}}{\text{Distance}}\)
\(\text{Average speed} = \frac{t}{2\pi r} = \frac{62.8}{2 \times 3.14 \times 100} = 10 \text{ m/s}^{-1}\)
A particle moves along a straight line OX. At a time t (in seconds) the distance x (in metres) of the particle from O is given by x = 40 + 12t - t3 How long would the particle travel before coming to rest ?
The displacement x of a particle varies with time t as \(x=ae^{- \alpha t} + be ^{\beta t}\), where \(a,b,\) \(\alpha\) and \(\beta\) are positive constants. The velocity of the particle will:
A sphere of radius R is cut from a larger solid sphere of radius 2R as shown in the figure. The ratio of the moment of inertia of the smaller sphere to that of the rest part of the sphere about the Y-axis is :
A constant voltage of 50 V is maintained between the points A and B of the circuit shown in the figure. The current through the branch CD of the circuit is :
The rate at which an object covers a certain distance is commonly known as speed.
The rate at which an object changes position in a certain direction is called velocity.
Read More: Difference Between Speed and Velocity