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The Case for Biocalculus: Improving Student Understanding of the Utility Value of Mathematics to Biology and Affect toward Mathematics

机译:生物植物的案例:提高学生对数学实用价值的理解,以生物学和影响数学

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The next generation of life science professionals will require far more quantitative skills than prior generations. Calculus is important for understanding dynamical systems in biology and, therefore, is often a required course for life science students. However, many life science students do not understand the utility value of mathematics to biology. Therefore, according to expectancy-value theory, life science students may experience lower motivation, which can impact their performance in a calculus course. This study examines how two different biocalculus courses, which integrated calculus and biological concepts and successfully halved the rates of students earning a D, F, or withdrawing (DFW), affected life science students’ utility value, interest, and overall attitudes toward mathematics. Using pre and post surveys, we found that students’ interest in mathematics increased by the end of the semester, and they demonstrated a more sophisticated understanding of how mathematics is used in biology. Students whose attitudes toward mathematics improved primarily attributed these changes to a better understanding of the utility of mathematics to biology, feelings of competence in mathematics, or rapport with the instructor. Thus, communicating the utility value of mathematics to biology through integrated mathematics–biology courses can contribute to improved attitudes toward mathematics that can impact students’ motivation and performance.
机译:下一代生命科学专业人员将需要比前几代的量化能力更大。微积分对于了解生物学中的动态系统是重要的,因此,往往是生命科学生所需的课程。然而,许多生命科学的学生不了解数学的实用价值对生物学。因此,根据寿命值理论,生命科学学生可能会越来越低的动机,这可能影响他们在微积分过程中的表现。本研究探讨了两种不同的生物课程,综合微积分和生物学概念以及成功减少了赚取D,F或撤回(DFW)的学生率,影响了生命科学学生的实用价值,兴趣和总体态度。使用前后调查,我们发现学生对数学的兴趣在学期结束时,他们表现出更复杂的了解数学如何在生物学中使用。对数学的态度改善的学生主要归因于这些变化,以更好地了解数学对生物学,数学竞争力的效用,或与教练的关系。因此,通过集成数学 - 生物学课程将数学的公用事业价值与生物学传达给生物学课程可以改善对能够影响学生的动机和表现的数学的态度。

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