English

Simple fusion-fission quantifies Israel-Palestine violence and suggests multi-adversary solution

Physics and Society 2024-09-09 v2 Computational Engineering, Finance, and Science Mathematical Physics math.MP Adaptation and Self-Organizing Systems

Abstract

Why humans fight has no easy answer. However, understanding better how humans fight could inform future interventions, hidden shifts and casualty risk. Fusion-fission describes the well-known grouping behavior of fish etc. fighting for survival in the face of strong opponents: they form clusters ('fusion') which provide collective benefits and a cluster scatters when it senses danger ('fission'). Here we show how similar clustering (fusion-fission) of human fighters provides a unified quantitative explanation for complex casualty patterns across decades of Israel-Palestine region violence, as well as the October 7 surprise attack -- and uncovers a hidden post-October 7 shift. State-of-the-art data shows this fighter fusion-fission in action. It also predicts future 'super-shock' attacks that will be more lethal than October 7 and will arrive earlier. It offers a multi-adversary solution. Our results -- which include testable formulae and a plug-and-play simulation -- enable concrete risk assessments of future casualties and policy-making grounded by fighter behavior.

Keywords

Cite

@article{arxiv.2409.02816,
  title  = {Simple fusion-fission quantifies Israel-Palestine violence and suggests multi-adversary solution},
  author = {Frank Yingjie Huo and Pedro D. Manrique and Dylan J. Restrepo and Gordon Woo and Neil F. Johnson},
  journal= {arXiv preprint arXiv:2409.02816},
  year   = {2024}
}

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