Email
mjradz@wpi.edu
Office
Salisbury Labs 313
Affiliated Department or Office
Education
Ph.D. - Economics - University of Notre Dame - 1985
M.A. - Economics - University of Notre Dame - 1982
B.A. - Economics - St. Norbert College - 1979

Professor Radzicki is an economist and simulation scientist who directs WPI’s Complex Systems Laboratory as well as the university’s Program in Technology, Policy, and Sustainability. He has developed techniques for applying system dynamics computer simulation modeling to problems in complex socioeconomic systems, and created teachable and repeatable methods for turning these models into user-friendly games or “flight simulators” that can be used by those who did not participate in the creation of the models to understand and control their dynamics.

System dynamics is an approach to social system modeling that has its origins in control theory and electrical engineering. It is used to help policy makers reach a consensus on how to redesign social systems so that they exhibit improved, robust, and resilient behavior. As such, system dynamics is useful for addressing many of the world’s wicked problems and grand challenges, the solutions to which consist of interacting technical, economic, political, psychological, cultural, and environmental factors. Indeed, Professor Radzicki believes that solving the world’s most challenging problems requires leadership and leaders are, among other things, systems thinkers

Some examples of system dynamics flights simulators created by Professor Radzicki include:

Student Workload Flight Simulator

Pandemic Flight Simulator

Project Management Flight Simulator

Heroin-Related Crime Flight Simulator

Saving the Deer on the Kaibab Plateau Flight Simulator

World Dynamics Flight Simulator

Email
mjradz@wpi.edu
Affiliated Department or Office
Education
Ph.D. - Economics - University of Notre Dame - 1985
M.A. - Economics - University of Notre Dame - 1982
B.A. - Economics - St. Norbert College - 1979

Professor Radzicki is an economist and simulation scientist who directs WPI’s Complex Systems Laboratory as well as the university’s Program in Technology, Policy, and Sustainability. He has developed techniques for applying system dynamics computer simulation modeling to problems in complex socioeconomic systems, and created teachable and repeatable methods for turning these models into user-friendly games or “flight simulators” that can be used by those who did not participate in the creation of the models to understand and control their dynamics.

System dynamics is an approach to social system modeling that has its origins in control theory and electrical engineering. It is used to help policy makers reach a consensus on how to redesign social systems so that they exhibit improved, robust, and resilient behavior. As such, system dynamics is useful for addressing many of the world’s wicked problems and grand challenges, the solutions to which consist of interacting technical, economic, political, psychological, cultural, and environmental factors. Indeed, Professor Radzicki believes that solving the world’s most challenging problems requires leadership and leaders are, among other things, systems thinkers

Some examples of system dynamics flights simulators created by Professor Radzicki include:

Student Workload Flight Simulator

Pandemic Flight Simulator

Project Management Flight Simulator

Heroin-Related Crime Flight Simulator

Saving the Deer on the Kaibab Plateau Flight Simulator

World Dynamics Flight Simulator

Office
Salisbury Labs 313

Scholarly Work

Radzicki, M. (1988). “Institutional Dynamics: An Extension of the Institutionalist Approach to Socioeconomic Analysis.” Journal of Economic Issues. 22 (3): 633-666.

Professional Highlights & Honors
President, 2006 - 2007
System Dynamics Society