Applications of Numerical Algebraic Geometry in Math, Science, and Engineering

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=='''Confirmed Speakers'''== =='''Confirmed Speakers'''==
-Elizabeth Gross+Elizabeth Gross,
San Jose State University San Jose State University
-Nick Hein+Nick Hein,
Benedictine College Benedictine College
-Dhagash Mehta+Dhagash Mehta,
United Technologies Research Center United Technologies Research Center
-Wenrui Hao+Wenrui Hao,
Penn State Penn State
-Sam Sherman+Sam Sherman,
University of Notre Dame University of Notre Dame
-Lee, Tsung-Lin+Lee, Tsung-Lin,
National Sun Yat-sen University National Sun Yat-sen University
-Karleigh Cameron+Karleigh Cameron,
Colorado State University Colorado State University
-Parker Edwards+Parker Edwards,
University of Florida University of Florida

Revision as of 18:20, 17 January 2017

Overview

Numerical algebraic geometry is driven by applications. The need to solve polynomial systems is strong, especially in fields such as smart grid networks, chemical reaction networks, kinematics and robotics, quantum and string theory, algebraic statistics, and many others. With continuing advances in computer hardware and theory and algorithms in numerical algebraic geometry, the scope of problems we can solve will also evolve. This session features talks discussing the application of theory, algorithms, and software in numerical algebraic geometry to problems across mathematics, science, and engineering.

Organizer

Dani Brake

Confirmed Speakers

Elizabeth Gross, San Jose State University

Nick Hein, Benedictine College

Dhagash Mehta, United Technologies Research Center

Wenrui Hao, Penn State

Sam Sherman, University of Notre Dame

Lee, Tsung-Lin, National Sun Yat-sen University

Karleigh Cameron, Colorado State University

Parker Edwards, University of Florida

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