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Health & Science3h 7m ago

A Dresden physics team working with Roderich Moessner developed a theory that makes it possible to describe nonreciprocal interactions efficiently and simulate them far more precisely.

Dresden, Germany

Who
a Dresden physics team, Roderich Moessner, Marín Bukov, Ricard Alert
What
A Dresden physics team working with Roderich Moessner developed a theory that makes it possible to describe nonreciprocal interactions efficiently and simulate them far more precisely.
When
Fri, 12 Jun 2026 14:20:07 GMT · 3h 7m ago
Where
Dresden, Germany ·
Why
Collective systems like bird flocks and cells exhibit nonreciprocal interactions, where individual elements respond to only part of their surroundings, seemingly defying Newton's third law of motion.
The Frontline Impact

How this affects you

This new theory provides a tool to efficiently and accurately simulate nonreciprocal systems, which could significantly advance research in biology and collective motion, deepening fundamental understanding of these processes.

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  1. Currently Reading3h 7m ago
    A Dresden physics team working with Roderich Moessner developed a theory that makes it possible to describe nonreciprocal interactions efficiently and simulate them far more precisely.
  2. Health & Science3h 7m ago
    A Dresden physics team working with Roderich Moessner has developed a theory that makes it possible to describe nonreciprocal interactions efficiently and simulate them far more precisely.
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