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Displaying 10 of 41 results social science clear search

Mason Wright Member since: Thu, Oct 24, 2013 at 03:54 AM

agent-based modeling
social science simulation
computational economics

Gert Hofstede Member since: Wed, Mar 05, 2014 at 09:05 PM

PhD

My research focuses on using generic social science in creating models of social reality, in particular self-organization of social systems.

Xiaotian Wang Member since: Fri, Mar 28, 2014 at 02:23 AM

PHD of Engineering in Modeling and Simulation, Proficiency in Agent-based Modeling

Social network analysis has an especially long tradition in the social science. In recent years, a dramatically increased visibility of SNA, however, is owed to statistical physicists. Among many, Barabasi-Albert model (BA model) has attracted particular attention because of its mathematical properties (i.e., obeying power-law distribution) and its appearance in a diverse range of social phenomena. BA model assumes that nodes with more links (i.e., “popular nodes”) are more likely to be connected when new nodes entered a system. However, significant deviations from BA model have been reported in many social networks. Although numerous variants of BA model are developed, they still share the key assumption that nodes with more links were more likely to be connected. I think this line of research is problematic since it assumes all nodes possess the same preference and overlooks the potential impacts of agent heterogeneity on network formation. When joining a real social network, people are not only driven by instrumental calculation of connecting with the popular, but also motivated by intrinsic affection of joining the like. The impact of this mixed preferential attachment is particularly consequential on formation of social networks. I propose an integrative agent-based model of heterogeneous attachment encompassing both instrumental calculation and intrinsic similarity. Particularly, it emphasizes the way in which agent heterogeneity affects social network formation. This integrative approach can strongly advance our understanding about the formation of various networks.

E Reed Member since: Mon, Jul 28, 2014 at 03:02 AM

Computational Social Science

Agent Based Models used in policy analysis

Noha Nagi Member since: Tue, Oct 28, 2014 at 06:44 PM

Bachelor in statistics, Preparing MSC in social science computing

Giorgio Gosti Member since: Tue, Jan 13, 2015 at 12:50 PM

Magistral Degree, Physics, University of Rome, “La Sapienza”, Italy, Dottorato, Computer Science and Mathemaatics, University of Perugia, Italy, PhD, Institute for Mathematical Behavioral Sciences, Social Science, University of California, Irvine

My research focuses pn the intersection between game theory, social networks, and multi-agent simulations. The objectives of this scientific endeavor are to inform policy makers, generate new technological applications, and bring new insight into human and non-human social behavior. My research focus is on the transformation of cultural conventions, such as signaling and lexical forms, and on many cell models models of stem cell derived clonal colony.

Because the models I analyze are formally defined using game theory and network theory, I am able to approach them with different methods that range from stochastic process analysis to multi-agent simulations.

Gene Callahan Member since: Mon, Mar 09, 2015 at 07:53 PM

PhD, Cardiff University, MS, London School of Economics

Social science modeling, especially capital theory.

William Hamilton Member since: Tue, Mar 17, 2015 at 01:15 AM Full Member

Bachelor of Arts, Psychology, University of California, Merced, Associate of Arts, Social Science, Reedley College

Andrew Crooks Member since: Mon, Feb 09, 2009 at 08:11 PM Full Member

Andrew Crooks is an Associate Professor with a joint appointment between the Computational Social Science Program within the Department of Computational and Data Sciences and the Department of Geography and GeoInformation Science, which are part of the College of Science at George Mason University. His areas of expertise specifically relate to integrating agent-based modeling (ABM) and geographic information systems (GIS) to explore human behavior. Moreover, his research focuses on exploring and understanding the natural and socio-economic environments specifically urban areas using GIS, spatial analysis, social network analysis (SNA), Web 2.0 technologies and ABM methodologies.

GIS, Agent-based modeling, social network analysis

Hawal Shamon Member since: Fri, Jan 22, 2016 at 07:59 AM

Economics & Sociology, Social Science

Displaying 10 of 41 results social science clear search

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