Introduction
2. Inertial vs. Non-Inertial Frames
Learning outcomes
- I can distinguish between inertial and non-inertial reference frames.
- I can describe the motion of objects in inertial frames.
- I can explain why fictitious forces appear in non-inertial frames.
- I can identify examples of inertial and accelerating frames.
- I can relate Newton's First Law to inertial frames.
Introduction
When you are sitting in a car travelling at a constant speed, a cup on the dashboard remains still unless someone moves it. However, if the driver suddenly accelerates, brakes, or turns, the cup appears to slide across the dashboard. Has a new force suddenly appeared?
The answer depends on the reference frame you choose. In physics, some reference frames are moving at a constant velocity, while others are accelerating. Newton's Laws work directly in constant-velocity frames, called inertial reference frames, but require additional considerations in accelerating frames, called non-inertial reference frames.
Understanding the difference between these two types of reference frames helps explain many everyday experiences, from feeling pushed backward when a car accelerates to astronauts training in rotating simulators.
Inertial Reference Frames
An inertial reference frame is a reference frame that is:
- At rest, or
- Moving with constant velocity (constant speed in a straight line).
In an inertial frame:
- Newton's Laws apply directly.
- Objects remain at rest or move with constant velocity unless acted upon by a net external force.
This is the type of reference frame used in most introductory physics problems.