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Gunog Seo

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Gunog Seo

Associate Professor of Mathematics

Department/Office Information

Mathematics
203 McGregory Hall
  • M 11:00am - 12:00pm (203 McGregory Hall)
  • R 11:00am - 1:00pm (202 McGregory Hall)
  • MS (2003) and PhD (2008) in Applied Mathematics at the University of Washington
  • BS (1998) in Mathematics at Catholic University of Korea
  • Assistant professor (2013-Present), Mathematics, ²Ø¾«¸ó
  • Postdoctoral researcher (2012-2013), Mathematics, Ryerson University and York University
  • Assistant professor (2011-2012), Mathematics and Statistics, Thompson Rivers University
  • Postdoctoral researcher (2010-2011), Mathematics and Statistics, McMaster University
  • Postdoctoral researcher (2008-2010), Mathematics and Statistics, University of Ottawa

Mathematical Biology, Spatial Ecology, Population Dynamics, Mathematical Modelling of Infectious Diseases, Biological Invasions, Dynamical Systems, Bifurcation Theory, Differential Equations (ODEs & PDEs)

Papers in Preparation

  • Qihua Huang, Gunog Seo, and Chunhua Shan. A toxin-dependent predator-prey model with a Holling type I functional response
  • Gunog Seo.  A discrete-time predator-prey model with a Holling type I functional response
  • Gunog Seo. Effects of use of different mathematical forms of a functional response on pest control strategies

Published Papers

  1. Gunog Seo and Gail S.K. Wolkowicz (2020) Pest control by generalist parasitoids: a bifurcation theory approach. Discrete and Continuous Dynamical Systems Series S., 13(11),&²Ô²ú²õ±è;3157–3187
  2. Gunog Seo and Gail S.K. Wolkowicz (2018) . Journal of Mathematical Biology, 76(7), 1873–1906.
  3. Qihua Huang, Gunog Seo, and Chunhua Shan (2018) . Mathematical Biosciences, 296, 26–35.
  4. Gunog Seo and Gail S.K. Wolkowicz (2015) Existence of multiple limit cycles in a predator–prey model with arctan(ax) as functional response. Communications in Mathematical Analysis, 18(1),&²Ô²ú²õ±è;64–68.
  5. Jian Fang, Kunquan Lan, Gunog Seo and Jianhong Wu (2014) Spatial dynamics of an age-structured population model of Asian Clams. SIAM Journal on Applied Mathematics, 74(4), 959–979.
  6. Alexandra Erbach, Frithjof Lutscher, and Gunog Seo (2013) Bistability and limit cycles in generalist predator–prey dynamics. Ecological Complexity, 14, 48–55.
  7. Gunog Seo and Frithjof Lutscher (2011) Spread rates under temporal variability: calculation and application to invasions. M3AS: Mathematical Models and Methods in Applied Sciences, 21(12), 2469–2489.
  8. Gunog Seo and Donald L. DeAngelis (2011) A predator–prey model with a Holling type I functional response including a predator mutual interference. Journal of Nonlinear Science, 21(6), 811–833.
  9. Frithjof Lutscher and Gunog Seo (2011) The effect of temporal variability on persistence conditions in rivers. Journal of Theoretical Biology, 283 (1), 53–59.
  10. Gunog Seo and Mark Kot (2009) The dynamics of a simple laissez-faire model with two predators. Mathematical Biosciences and Engineering, 6 (1), 145–172.
  11. Gunog Seo and Mark Kot (2008) A comparison of two predator–prey models with Holling’s type I functional response. Mathematical Biosciences, 212 (2), 161–179.

The dynamics of simple predator-prey models with Holling’s functional responses. University of Washington. 2008.

  • Nominated for the Phi Eta Sigma "Professor of the Year" award, ²Ø¾«¸ó, 2014-2015, 2015-2016, 2018-2019, 2019-2020.
  • Included on the list of the most influential people at ²Ø¾«¸ó from the survey of the class of 2016, 2017, 2018.  
  •  (best paper in 2013-2014 volume of the Journal of Biological Dynamics; jointly authored with Marion Weedermann and Gail Wolkowicz; awarded in October, 2015). 
  • Research Council Discretionary Grant, 2017, ²Ø¾«¸ó, NY. 
  • Research Council Discretionary Grant, 2015, ²Ø¾«¸ó, NY.
  • NSF Grant to collaborate with Canadian researchers, 2014.
  • NSF Travel Grant for the AARMS-CRM workshop on Sustainability of Aquatic Ecosystem Networks held in Fredericton, New Brunswick (October 22-25), 2013.
  • Research Council Discretionary Grant, 2013, ²Ø¾«¸ó, NY.