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On Adaptive Networks and Network Reification
Ins and Outs of Network-Oriented Modeling
A Unified Approach to Represent Network Adaptation Principles by Network Reification
Modeling Higher-Order Network Adaptation by Multilevel Network Reification
A Reified Network Model for Adaptive Decision Making Based on the Disconnect-Reconnect Adaptation Principle
Using Multilevel Network Reification to Model Second-Order Adaptive Bonding by Homophily
Reified Adaptive Network Models of Higher-Order Modeling a Strange Loop
A Modeling Environment for Reified Temporal-Causal Network Models
On the Universal Combination Function and the Universal Difference Equation for Reified Temporal-Causal Network Models
Relating Network Emerging Behaviour to Network Structure
Analysis of a Networks Emerging Behaviour via its Structure Involving its Strongly Connected Components
Relating a Reified Adaptive Networks Structure to its Emerging Behaviour for Bonding by Homophily
Relating a Reified Adaptive Networks Structure to its Emerging Behaviour for Hebbian learning
Mathematical Details of Specific Difference and Differential Equations and Mathematical Analysis of Emerging Network Behaviour
Using Network Reification for Adaptive Networks: Discussion.
Ins and Outs of Network-Oriented Modeling
A Unified Approach to Represent Network Adaptation Principles by Network Reification
Modeling Higher-Order Network Adaptation by Multilevel Network Reification
A Reified Network Model for Adaptive Decision Making Based on the Disconnect-Reconnect Adaptation Principle
Using Multilevel Network Reification to Model Second-Order Adaptive Bonding by Homophily
Reified Adaptive Network Models of Higher-Order Modeling a Strange Loop
A Modeling Environment for Reified Temporal-Causal Network Models
On the Universal Combination Function and the Universal Difference Equation for Reified Temporal-Causal Network Models
Relating Network Emerging Behaviour to Network Structure
Analysis of a Networks Emerging Behaviour via its Structure Involving its Strongly Connected Components
Relating a Reified Adaptive Networks Structure to its Emerging Behaviour for Bonding by Homophily
Relating a Reified Adaptive Networks Structure to its Emerging Behaviour for Hebbian learning
Mathematical Details of Specific Difference and Differential Equations and Mathematical Analysis of Emerging Network Behaviour
Using Network Reification for Adaptive Networks: Discussion.