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Displaying 10 of 142 results for "Miriam C. Kopels" clear search

Emma Norling Member since: Tue, Dec 03, 2013 at 11:57 AM

PhD (Computer Science) The University of Melbourne (2009)

Agent-based models of human behaviour, from cognitive modelling through to cognitively-rich social simulation.

Jessica Turnley Member since: Mon, Jul 13, 2015 at 08:02 PM Full Member

B.A. Anthropology/English Lit, Univ of California, Santa Cruz, 1974, M.A. Social Anthropology, Univ of Michigan, Ann Arbor, 1977, M.A. Cultural Anthropology, Cornell University, 1978, Ph.D. Anthropology/SE Asian Studies, Cornell University, 1983

I am interested in questions of method, and in the application of computational social models to a wide variety of national security questions (such as counterterrorism and counterinsurgency) as well as decision-making around complex natural resources such as water. My methods interest center on the use of qualitative social theory to inform the structure of computational social models, and the ways in which such models handle qualitative data. This raises questions around the nature of data and the ways in which computational social models convey information to decision-makers.

Daniel Ciganda Member since: Fri, Jul 15, 2016 at 09:42 AM

MA.

I use Agent-Based Models to understand contemporary fertility decision making in below-replacement fertility contexts.

Aaron Bramson Member since: Tue, Jul 01, 2014 at 12:36 PM Full Member

Ph.D. Philosophy and Political Science, University of Michigan, M.S. Mathematics, Northeastern University, B.S. Economics, University of Florida, B.A. Philosophy, University of Florida

Dr. Aaron Bramson is principal investigator of the AI Strategy Center of GA technologies in Tokyo, Japan, as well as an Affiliate Researcher in the Department of General Economics of Ghent University in Belgium. His research specialty is complexity science, especially methodologies for modeling complex systems. Research topics span across disciplines: measures of polarization and diversity, belief measure interoperability, integrating geospatial and network analyses for measuring walkability and neighborhood identification, and myriad applications in artificial intelligence and data visualization. He received his Ph.D. from the University of Michigan in a joint program with the departments of Political Science and Philosophy as well as an M.S. in Mathematics from Northeastern University.

Complex systems, agent-based modeling, social simulation, computational models, network models, network theory, methodology, philosophy of science, ontology, epistemology, ethics, artificial intelligence, big data analysis, geospatial data analysis,

R Dinapoli Member since: Tue, Jul 16, 2013 at 07:55 PM

B.A. Anthropology, M.A. Anthropology (in progress)

My research involves the application of behavioral ecological models to archaeological problems with a focus on Pacific Island societies.

Vinicius Ferraz Member since: Mon, Mar 01, 2021 at 08:09 AM Full Member

Game theory, artificial intelligence, agent-based models, genetic algorithms.

Beth Fulton Member since: Thu, Jan 12, 2012 at 04:01 AM Full Member

PhD

Using agent based models to look at ecosystem-based or integrated management of oceans and coastal zones

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.

Robert Canales Member since: Tue, Oct 22, 2013 at 12:11 AM

Environmental Engineering, PhD, Statistics, MS

I use agent-based systems, stochastic process, mass balance models and computational statistics in exploring human exposure assessment.

Paul Van Liedekerke Member since: Thu, May 31, 2018 at 02:38 PM

Interested in numerical models and new conceptual ideas, applications from industry to medicine.

I focus on numerical modeling of mechanics of solid materials and cell mechanics. The models that I developed so far address granular matters, bio-fluids, cellular tissues, and individual cells.

I further develop Agent-based Models, which are methods to predict collective behavior from individual dynamics controlled by rules or differential equations. Examples: tumor growth, swarms, crowd movement.

The methods I used are Particle-based methods which offer great flexibility within physical modeling, and can operate in a large range of scales, from atomistic scales (e.g. Molecular Dynamics) to continuum approaches (e.g. Smoothed Particle Hydrodynamics).

Displaying 10 of 142 results for "Miriam C. Kopels" clear search

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