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Causal invariance

A property where the causal graph of events remains unique regardless of the order of operations.

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    Wolfram's principle of computational equivalence suggests that complex phenomena arise from simple rules, challenging traditional scientific predictability.
    The Wolfram Physics Project posits that space is fundamentally discrete, with 'atoms of space' much smaller than known particles.
    Causal invariance in Wolfram's models allows new approaches to computation, potentially impacting parallel processing and quantum computing.
    Wolfram argues that the universe operates at a computational level equivalent to a Turing machine, not hyper-computational.
    Quantum mechanics and general relativity are seen as pockets of computational reducibility within a broader framework of irreducibility.

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