Science & ClimateScienceDaily1 min read9/20/2026 (3h ago)

Scientists find that “perfect” systems may be surprisingly fragile

Scientists find that “perfect” systems may be surprisingly fragile
60-Word AI Digest

Complex systems may work better when their parts are not perfectly alike. Northwestern physicists found that carefully balanced variation, or “disorder,” can make networks such as power grids, ecosystems, neurons, and materials more stable. Even random differences sometimes improved stability compared with completely uniform systems. The discovery could help researchers design more resilient technologies and explain...

Key Takeaways

  • Complex systems may work better when their parts are not perfectly alike.
  • Northwestern physicists found that carefully balanced variation, or “disorder,” can make networks such as power grids, ecosystems, neurons, and materials more stable.
  • Even random differences sometimes improved stability compared with completely uniform systems.

Complex systems may work better when their parts are not perfectly alike. Northwestern physicists found that carefully balanced variation, or “disorder,” can make networks such as power grids, ecosystems, neurons, and materials more stable. Even random differences sometimes improved stability compared with completely uniform systems. The discovery could help researchers design more resilient technologies and explain why natural systems are so rarely perfectly uniform.

Original Publisher Attribution

This summary was curated from ScienceDaily.

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Scientists find that “perfect” systems may be surprisingly fragile — Loop60