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the claim
Nonlinear dynamical systems exhibit the butterfly effect.
the verdict
SUPPORTED
the evidence backs this
confidence 91/100

Nonlinear dynamical systems frequently exhibit chaotic behavior characterized by extreme sensitivity to initial conditions, commonly known as the butterfly effect.

Evidence for · 4
Visual Analysis of Nonlinear Dynamical Systems: Chaos, Fractals, Self-Similarity and the Limits of Prediction
2016 · cited by 331
Paper 0 establishes that chaotic nonlinear dynamical systems exhibit a very sensitive dependence on initial conditions.
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More for · 3
Unifying scrambling, thermalization and entanglement through measurement of fidelity out-of-time-order correlators in the Dicke model
2018 · cited by 211
Paper 1 connects quantum chaos and the butterfly effect in many-body systems to Lyapunov exponents.
Several Chaotic Analysis of Lorenz System
2017 · cited by 8
Paper 3 proves the butterfly effect within the context of chaotic nonlinear differential equation systems like Lorenz.
Development and Evaluation of an Innovative Three-Dimensional Hyperchaotic map
2025 · cited by 0
Paper 7 evaluates a hyperchaotic map and explicitly demonstrates its instability and possession of the butterfly effect due to sensitive initial conditions.
The paper trail · every fact has a biography
first checked31 Jul 2026
judged → SUPPORTED · 9131 Jul 2026
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