35/s-2
(0-14)/7-14/7-2ACELERATION= -2m/sDECELERATION=2m/s
Acceleration = (change in speed)/(time for the change)Bike: (0 - 3)/6 = -1/2 meter per second2Car: (15 - 20)/6 = -2/3 meter per second2Both accelerations are negative. The car's is greater.We could have seen that right away, without all the calculations, just by noticingthat the car loses more speed in the same amount of time ! That's why I couldn'tscore bubkes on the GE College Bowl.
The average speed of an ant that crawls 1 meter in 45 seconds can be calculated using the formula: speed = distance/time. In this case, the speed is 1 meter divided by 45 seconds, which equals approximately 0.0222 meters per second. Therefore, the ant's average speed is around 0.0222 m/s.
The time does it take a bicycle to travel 2013 meter if it goes a speed of 108 meter per second is 18.63888888888889 seconds.
81 km/hr
Speed = Distance/Time = 5 metres per second
between 12 to 14 seconds is good for a beginner
deceleration
Its 3.0 m/s acceleration = (final_speed − initial_speed) / time_interval Solve the above for "final speed." They give you all the other quantities, so just plug them in. (Remember that "deceleration" means the acceleration is negative.
Acceleration and deceleration are both the rate at which velocity changes, Deceleration is a negative acceleration. In an equation the rate of deceleration is shown as a negative acceleration valueCentripetal acceleration is different and represents the rate of change of tangential velocity. There is no equivalent centripetal deceleration.
A 10.49-second 100-meter dash equates to an average speed of 21.32 miles per hour.
Deceleration is the rate at which an object slows down or decreases its speed. Acceleration is the rate at which an object speeds up or increases its velocity. Both are measures of how quickly an object's motion changes.