For mutualistic and gene regulatory networks, nonlinear tipping-point control importance favors high-degree nodes, while linear controllability importance favors low-degree nodes, indicating a systematic mismatch.
Dominating scale-free networks with variable scaling exponent: hetero- geneous networks are not difficult to control,
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Irrelevance of linear controllability to nonlinear dynamical networks
For mutualistic and gene regulatory networks, nonlinear tipping-point control importance favors high-degree nodes, while linear controllability importance favors low-degree nodes, indicating a systematic mismatch.