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Insights from exact social contagion dynamics on networks with higher-order structures.

, , , and . J. Complex Networks, (September 2023)

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Fast Variables Determine the Epidemic Threshold in the Pairwise Model with an Improved Closure., , and . COMPLEX NETWORKS (1), volume 812 of Studies in Computational Intelligence, page 365-375. Springer, (2018)Insights from exact social contagion dynamics on networks with higher-order structures., , , and . J. Complex Networks, (September 2023)Optimal Phase-Selective Entrainment of Heterogeneous Oscillator Ensembles., , and . SIAM J. Appl. Dyn. Syst., 22 (3): 2180-2205 (September 2023)Mapping Structural Diversity in Networks Sharing a Given Degree Distribution and Global Clustering: Adaptive Resolution Grid Search Evolution with Diophantine Equation-Based Mutations., , and . COMPLEX NETWORKS (1), volume 812 of Studies in Computational Intelligence, page 718-730. Springer, (2018)Inferring the time-varying functional connectivity of large-scale computer networks from emitted events., , , , , and . CoRR, (2018)Can epidemic models describe the diffusion of topics across disciplines?, , , and . J. Informetrics, 4 (1): 74-82 (2010)A genetic algorithm-based approach to mapping the diversity of networks sharing a given degree distribution and global clustering., , and . COMPLEX NETWORKS, volume 693 of Studies in Computational Intelligence, page 223-233. Springer, (2016)Methodology for a nullcline-based model from direct experiments: Applications to electrochemical reaction models., , and . Comput. Math. Appl., 65 (10): 1633-1644 (2013)Super compact pairwise model for SIS epidemic on heterogeneous networks., and . J. Complex Networks, 4 (2): 187-200 (2016)Higher-order structure and epidemic dynamics in clustered networks, , , and . Journal of Theoretical Biology, (May 2014)