A.2.23—Centripetal acceleration
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- SL
Radial acceleration
For uniform circular motion, the centripetal acceleration is directed toward the centre:
ac=rv2=ω2r=T24π2r
Velocity can be constant in magnitude
Even when speed is constant, the velocity direction changes continuously. That directional change produces inward acceleration.
Choose the matching data
Use v2/r when speed and radius are given, ω2r when angular speed is given, or 4π2r/T2 when period is given.
Common trap
Centripetal acceleration is not tangential and does not point along the instantaneous velocity.
The evidence includes a fan-tip calculation and a comparison of points on wheels with different radii, testing the radius dependence and angular-speed conversion.
Calculate / Identify
Select the version of the centripetal-acceleration equation matching the data, convert revolutions per minute to angular speed or period when needed, and give the radial direction if asked.
Using tangential acceleration or forgetting to convert rotational frequency into angular speed before applying ω²r.
Representative question
The fan is rotating at 120 revolutions every minute. Calculate the centripetal acceleration of the tip of a fan blade.
ALTERNATE 1
« ω= » 4πrads−1 « a=rω2= » 280 « ms−2 »
ALTERNATE 2
<v=T2πr>=22.6 m s−1
« a=rv2 » =280 « ms−2 »
Marking guidance:
Allow ECF from MP1 for wrong ω(120 gives 2.6×104<ms−2≫)
Allow ECF from MP1 for wrong T (2 s gives 18 « ms−2 »)