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    For nonlinear systems, Hamiltonians are never separable. — Carmelics
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    Home/Modality & Possibility
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    Supports→Nonseparability of a Hamiltonian is a necessary condition for chaos.

    For nonlinear systems, Hamiltonians are never separable.

    CausationModality & Possibility
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    Nonseparability of a Hamiltonian is a necessary condition for chaos.Nonseparable classical systems are the kinds of systems where chaotic behavior c...Stretching and folding mechanisms, which are required for chaos, require nonsepa...There are no transformation techniques that can turn a nonseparable Hamiltonian ...

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    Hamiltonians for nonlinear systems are never separable.98%Chaos is impossible for linear systems with separable Hamiltonians.81%In nonlinear systems, the whole cannot be reduced to the sum of its pa...80%Linear superposition implies that the Hamiltonians for linear systems ...79%

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    As discussed in Section 1.2.2, linear systems always obey the principle of linear superposition. This implies that the Hamiltonians for such systems are always separable. A separable Hamiltonian can always be transformed into a sum of separate Hamiltonians with one element in the sum corresponding to each subsystem. In effect, a separable system is one where the interactions among subsystems can be transformed away leaving the subsystems independent of each other. The whole is the sum of the par

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