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Inquiry-Based Modeling of Population Dynamics with Logistic Differential and Difference Equations

机译:基于逻辑差分和差分方程的人口动态建模

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Following a modeling-first approach to differential equations, inquiry-based learning activities on modeling and controlling the growth of locally relevant species, such as lionfish or sea turtles, are developed by the authors. Emerging exemplary practices are presented, building towards a balanced teaching of differential equations involving multiple mathematical perspectives, representations, and intra-disciplinary and interdisciplinary mathematical connections. This innovative approach is an effort towards realizing the MAA’s Common Vision for Undergraduate Mathematical Sciences programs in 2025. Discrete and continuous approaches are used simultaneously, while numerical and graphical methods are used to build connections between logistic differential and difference equation models. The resulting chaotic behavior of the solutions is also emphasized. We suggest that this enhancement of the Doing the Math phase of modeling outlined in SIAM’s 2016 Guidelines for Assessment and Instruction in Mathematical Modeling offers a wider access to deeper mathematics, and helps to foster complementary disciplinary perspectives in mathematics.
机译:在算术方程的建模方法之后,作者开发了基于查询和控制局部相关物种(如狮子鱼或海龟)的增长的查询学习活动。提出了新兴的示例性实践,建立涉及涉及多个数学视角,表示和跨学科和跨学科数学连接的微分方程的平衡教学。这种创新方法是在2025年实现MAA对本科数学科学计划的常见愿景。同时使用离散和连续方法,而数值和图形方法用于构建物流差分和差分方程模型之间的连接。还强调了解决方案的混沌行为。我们建议,在数学建模中概述的2016年2016年评估和指导指导方针中概述的制定的数学阶段的这种增强提供了更广泛的数学访问,并有助于促进数学中的互补纪律视角。

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