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N-Body Problem:Exploring the N-body problem through information theory

Updated October 3, 2026 · 12:04 AM · 6 · source date October 2, 2026

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N-Body Problem:Exploring the N-body problem through information theory quantiota / N-Body-Problem Public Uh oh! There was an error while loading.

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This Research is relevant to the technology intelligence record because it involves GitHub, Docker. The source article should remain the factual reference for follow-up coverage.

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  • quantiota / N-Body-Problem Public Uh oh!
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  • Notifications You must be signed in to change notification settings Fork 0 Star 0 Branches Tags Open more actions menu Latest commit History 60 Commits 60 Commits Folders and files Name Name Last commit message Last commit date .github .github data data queries queries scripts scripts traceable_object traceable_object 1905.05988v1.pdf 1905.05988v1.pdf CITATION.cff CITATION.cff LICENSE LICENSE README.md README.md n-body-problem.bib n-body-problem.bib requirements.txt requirements.txt Repository files navigation N-Body Problem Exploring the N-body problem through information theory and Structured Knowledge Accumulation (SKA) This repository investigates whether Structured Knowledge Accumulation (SKA) can reconstruct the organization and dynamics of the Solar System through learning from causal information exchanges, with kinetic energy interpreted as the physical cost of learning.
  • The disproportion A planetary system is ordinarily treated as the paradigm of complexity: eight bodies, 28 mutual interactions, sensitive dependence on initial conditions, secular resonances, chaos on long timescales.
  • Classical mechanics meets that complexity by writing an equally complex apparatus — the full set of coupled equations, all the masses, $G$ , and carefully chosen initial data.
  • The abstraction does the opposite.
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