Difference between revisions of "Forest UCM MiNF"
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:A force pushes you back into your seat when your Jet airplane takes off  | :A force pushes you back into your seat when your Jet airplane takes off  | ||
:you slam on the brakes and hit your head on the car's dashboard  | :you slam on the brakes and hit your head on the car's dashboard  | ||
| + | |||
| + | === Pedulum in an accelerating car===  | ||
| + | |||
| + | Consider a pendulum mounted inside a car that is accelerating to the right with a constant acceleration <math>\vec A</math>.  | ||
| + | |||
| + | What is the pendulums equilibrium angle <math>\theta_0</math>  | ||
| + | |||
| + | In frame <math>\mathcal S_0</math>  | ||
| + | : <math>\sum \vec F = m \ddot{\vec r}</math>  | ||
| + | |||
| + | In frame <math>\mathcal S</math>  | ||
Revision as of 13:40, 3 November 2014
Mechanics in Noninertial Reference Frames
Linearly accelerating reference frames
Let represent an inertial reference frame and \mathcal S represent an noninertial reference frame with acceleration relative to .
Ball thrown straight up
Consider the motion of a ball thrown straight up as viewed from .
Using a Galilean transformation (not a relativistic Lorentz transformation) 
At some instant in time the velocities add like
where
- = velocity of moving frame with respect to at some instant in time
 
taking derivative with respect to time
where
- inertial force
 
- in your noninertial frame, the ball appears to have a force causing it to accelerate in the direction.
 
The inertial force may also be referred to as a fictional force
an example is the "fictional" centrifugal force for rotational acceleration.
The observer in a noninertial reference frame will feel these frictional forces as if they are real but they are really a consequence of your accelerating reference frame
example
- A force pushes you back into your seat when your Jet airplane takes off
 - you slam on the brakes and hit your head on the car's dashboard
 
Pedulum in an accelerating car
Consider a pendulum mounted inside a car that is accelerating to the right with a constant acceleration .
What is the pendulums equilibrium angle
In frame
In frame