Wireva

Unequal Forces Between Particles Sustain Collective Motion, Study Finds

Researchers at Tokyo University of Science discover that non-reciprocal interactions between differently sized colloidal particles prevent aggregation and keep the system in a state of continuous reorganization, offering a new design principle for active materials.

Non-reciprocal interactions keep particles in collective motion
Unequal Forces Between Particles Sustain Collective Motion, Study Finds
Brownian motion · Wikimedia — licence per file · rights
Monitoring item. The full text is not distributed. Extract and source below.

Researchers at Tokyo University of Science discover that non-reciprocal interactions between differently sized colloidal particles prevent aggregation and keep the system in a state of continuous reorganization, offering a new design principle for active materials.