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Here is a list of our faculty and their main areas of interest:
| Farid Alizadeh |
Combinatorial optimization, Convex programming, Computational biology |
| Ronald Armstrong |
Enumerative algorithms, Network theory |
| Benjamin Avi-Itzhak |
Queueing theory, Stochastic O.R., Telecommunications networks |
| Adi Ben-Israel |
Matrix theory, Mathematical programming, Optimal control, Economics of uncertainty, Natural resources |
| Douglas Blair |
Social choice theory, Game theory |
| Endre Boros |
Discrete optimization, Theory of Boolean functions, Computational O.R. |
| Vaek Chvátal |
Graph theory, Combinatorics, Optimization |
| Darinka Dentcheva |
Applied Mathematics, Optimization, Stochastic Optimization, Mathematical Modeling, Statistics, Numerical Techniques |
| Jonathan Eckstein |
Mathematical programming, Parallel computing, Convex analysis, Proximal methods, Applied combinatorial optimization |
| Vladimir Gurvich |
Graph Theory, Combinatorics, Game Theory |
| Peter Hammer |
Combinatorial optimization, Integer programming, Boolean functions, Graph theory |
| Ron Harstad |
Game theory, Experimental economics, Auctions |
| Alan Hoffman |
Matrix Theory, Combinatorial Optimization |
| Douglas Jones |
computerized adaptive testing, Optimal design, Psychometrics |
| Paul Kantor |
Decision systems, Distributed detection and decision, Economics of information, Cost analysis and control |
| Leonid Khachian |
Mathematical programming, Computational complexity, Discrete optimization |
| Alexander Kogan |
Boolean functions, Combinatorial optimization, Artificial intelligence |
| Lei Lei |
Heuristic algorithms, Scheduling |
| Vadim Lozin |
Discrete Mathematics and Theoretical Computer Science, Combinatorics, Graph Theory, Boolean Functions, Logic |
| Benjamin Melamed |
Stochastic processes, Modeling and simulation, Telecommunications modeling, Programming languages |
| Andras Prekopa |
Stochastic processes and optimization, Linear and nonlinear programming, Inventory control, Applications to engineering design |
| Fred Roberts |
Mathematical models of social and policy problems, Measurement, Utility and decision-making, Graph theory, Scheduling |
| Uriel Rothblum |
Game Theory |
| Michael Rothkopf |
Practical applications of O.R., Models of competitive bidding |
| Andrzej Ruszczynski |
Stochastic programming, Financial modeling and risk management |
| David Shanno |
Large scale linear and nonlinear optimization, Applied O.R., business information systems |
| Igor Zverovich |
Graph Theory |
| Albert Williams |
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