Everyone can do Differential Equations

Authors

  • Shinemin Lin Savannah State University, USA
  • Domenick Thomas Student of Savannah State University

DOI:

https://doi.org/10.31686/ijier.vol5.iss4.674

Keywords:

dynamic modeling, SIR model, Prey-Predator model, Classroom mathematics

Abstract

Abstract: The original research is to make connection between classroom mathematics and real life issues through dynamic models using Excel.  After we completed several sample models such as Prey and Predator model, SIR model, we found we did really solve initial value differential equation problems. We even solve initial values system of linear differential equations numerically and graphically.  Therefore we extend our research to solve initial value differential equations using the same approach as we create dynamic models.  We tested first order and second order differential equations and all got satisfactory numerical solutions.

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References

Jo Boaler, “The Math-Class Paradox”, The Atlantic, Feb. 4, 2016

Bob Pannof, Workshop Notes at West Virginia State University, 1-3 August 2016

Zill, Wright, “Differential Equations with Boundary-valued Problems 8th Edition, 2013 pp 108-

Jack Andenoro, “The Spread of Infectious Disease”, http://home2.fvcc.edu/~dhicketh/DiffEqns/

Spring2012Projects/M274FinalProjectJackAndenoro/RuftDraft.pdf, May 11, 2012

Lin, Thomas, “Inquiry-Based Science and Mathematics Usinf Dynamic Modeling” submit to

Journal of Modern Education Review (ISSN 2155-7993), USA. AMC, 3/18/2017

Ron Larson, Bruce Edwards, Calculus 10th edition, ISBN1-285-057090

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Published

2017-04-01

How to Cite

Lin, S., & Thomas, D. (2017). Everyone can do Differential Equations. International Journal for Innovation Education and Research, 5(4), 131-142. https://doi.org/10.31686/ijier.vol5.iss4.674