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III - Directions

Glenn Ledder
Affiliation:
University of Nebraska-Lincoln
Jenna P. Carpenter
Affiliation:
Louisiana Tech University
Timothy D. Comar
Affiliation:
Benedictine University
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Summary

Introduction

Each of the papers in the Directions section addresses some perceived, but largely unmet, need in curricular development for undergraduate mathematical biology. Of course the question of what developments ought to occur is a matter of opinion. Each of these papers lays out a strong case and offers insights on how to introduce and develop the topics. As editors, we endorse these calls for a change in emphasis.

The section begins with the paper Integrating Statistics into College Algebra to Meet the Needs of Biology Students, by Sheldon Gordon of Farmingdale State University and Florence Gordon of the New York Institute of Technology. These authors are well known for their efforts to revitalize college algebra and precalculus courses. They argue for an algebra course designed to prepare students for statistics rather than calculus. The course would be more relevant to the life science students who constitute a large portion of the enrollment. The authors offer many suggestions for ways to bring statistical ideas and methods into the college algebra course while recommending a greater focus on concepts rather than techniques. Readers interested in precalculus courses should also see the paper by Ardis and Subramanian in the Processes section.

In Motivating Calculus with Biology, Sebastian Schreiber of the University of California at Davis argues that mathematics for biology should emphasize mathematical modeling. While all mathematics books contain word problems, some with biological themes, the typical word problem falls short of providing students with experience in mathematical modeling.

Type
Chapter
Information
Undergraduate Mathematics for the Life Sciences
Models, Processes, and Directions
, pp. 165 - 168
Publisher: Mathematical Association of America
Print publication year: 2013

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  • Directions
  • Edited by Glenn Ledder, University of Nebraska-Lincoln, Jenna P. Carpenter, Louisiana Tech University, Timothy D. Comar, Benedictine University
  • Book: Undergraduate Mathematics for the Life Sciences
  • Online publication: 05 October 2013
  • Chapter DOI: https://doi.org/10.5948/UPO9781614443162.029
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  • Directions
  • Edited by Glenn Ledder, University of Nebraska-Lincoln, Jenna P. Carpenter, Louisiana Tech University, Timothy D. Comar, Benedictine University
  • Book: Undergraduate Mathematics for the Life Sciences
  • Online publication: 05 October 2013
  • Chapter DOI: https://doi.org/10.5948/UPO9781614443162.029
Available formats
×

Save book to Google Drive

To save content items to your account, please confirm that you agree to abide by our usage policies. If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. Find out more about saving content to Google Drive.

  • Directions
  • Edited by Glenn Ledder, University of Nebraska-Lincoln, Jenna P. Carpenter, Louisiana Tech University, Timothy D. Comar, Benedictine University
  • Book: Undergraduate Mathematics for the Life Sciences
  • Online publication: 05 October 2013
  • Chapter DOI: https://doi.org/10.5948/UPO9781614443162.029
Available formats
×