To calculate the velocity of an object relative to a different reference frame, we need the Galilean composition of velocities. Instead of memorising formulas with subscripts to flip around in your head, it is convenient to use an arrow diagram: each object (or reference frame) is a node, each arrow is a known velocity, read as “velocity of the starting object as seen from the arrival object”.
The notation is the key: means “velocity of relative to ”, i.e. who is moving is outside the brackets, who is watching is inside.
Principle — Arrow diagram rule
To find the velocity of an object relative to an observer :
- Draw a node for each object/reference frame involved.
- Draw an arrow from to labelled with the velocity (velocity of relative to ), if we know it.
- Follow a path from to across the known arrows. For every arrow crossed in the opposite direction, flip the sign of the velocity.
- The algebraic sum of the velocities along the path gives the required velocity .
The advantage is that there is no need to remember which formula to use: just follow the path on the graph and the signs sort themselves out. Crossing an arrow “forwards” adds its velocity; crossing it “backwards” subtracts it.
Arrow diagram for the Galilean composition: each arrow is a known velocity. To find an unknown velocity, compose a path across the arrows; arrows crossed backwards flip sign.
The worked exercise Il gatto sul carrello applies the arrow diagram to a complete case, including the switch to the centre-of-mass reference frame.
Links
Topics: Centro di massa Skills: Cambio di sistema di riferimento
Related exercises: Esercizio svolto — Il gatto sul carrello · Razzo che esplode a metà traiettoria · Dimostrazione del teorema di König