The three families of forces — conservative, constraint and dissipative — are distinguished by how they connect bubbles and by the sign of the work they do. Collecting the rules into a single table lets you recognise, at a glance and given a force, which bubbles to draw and which way the arrow points.
| Force | Bubbles connected | Sign of the work |
|---|---|---|
| Weight, spring, Coulomb, universal gravity (conservative) | Body’s interaction’s | if it enters , if it exits |
| Rope tension, constraint reaction (constraint) | ; no | zero if the constraint is fixed; positive/negative on the two bodies if the constraint moves |
| Kinetic friction (dissipative) | Body’s (of the body or of the surface) | always negative (never positive!) |
The table highlights the structural difference between the three families. Conservative forces are the only ones that introduce a potential-energy bubble, and their arrow is reversible (it can go either way). Constraint forces connect two kinetic energies and, in the common case of a fixed constraint, do no work at all. Kinetic friction is the only one with a one-way arrow: always from towards , never the other way. Keeping this map in mind is the fastest way to correctly build a bubble diagram starting from the interaction diagram.
Links
Topics: Lavoro ed energia Concepts: Forze conservative · Energia termica da attrito Skills: Bilancio energetico a bolle
Related exercises: Problema — Blocco spinto con attrito · Problema — Due ragazzi spingono una cassa · Esercizio svolto — blocco su piano inclinato con molla e attrito