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Bennoun, Steve – PRIMUS, 2022
Cornell University has long offered a Calculus for Life Sciences course. In this case study, we report on how a team of pure mathematicians has modernized both the content and teaching methods of this course. The content went from a standard calculus course with few genuine applications in the life sciences to a course focusing on dynamical…
Descriptors: Mathematics Instruction, Calculus, Biological Sciences, Interdisciplinary Approach
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Madamanchi, Aasakiran; Thomas, Madison; Magana, Alejandra; Heiland, Randy; Macklin, Paul – PRIMUS, 2022
There is growing awareness of the need for mathematics and computing to quantitatively understand the complex dynamics and feedbacks in the life sciences. Although several institutions and research groups are conducting pioneering multidisciplinary research, communication and education across fields remain a bottleneck. The opportunity is ripe for…
Descriptors: Mathematics Instruction, Biological Sciences, Interdisciplinary Approach, Computation
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Luque, Antoni; Mullinix, James; Anderson, Matt; Williams, Kathy S.; Bowers, Janet – PRIMUS, 2022
Governmental and educational organizations have pointed out that students coming into the biological sciences require stronger skills in statistics and data modeling that are not usually addressed in typical engineering-based calculus courses. Our work here documents how faculty in biology and mathematics addressed this issue at a large urban…
Descriptors: Mathematics Instruction, Calculus, Undergraduate Students, STEM Education
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Herriott, Scott R.; Dunbar, Steven R. – PRIMUS, 2009
The common understanding within the mathematics community is that the role of the college algebra course is to prepare students for calculus. Though exceptions are emerging, the curriculum of most college algebra courses and the content of most textbooks on the market both reflect that assumption. This article calls that assumption into question…
Descriptors: Majors (Students), Textbooks, Biological Sciences, Sciences