Charlotte Zimmerman, Andrew McCarty, Suzanne White Brahmia, Alexis Olsho, M. De Cock, A. Boudreaux, Trevor I. Smith, Philip Eaton
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引用次数: 0
摘要
物理定量素养(PQL)——在物理背景下以新颖的方式应用熟悉的数学——在物理教室中无处不在。《定量素养物理清单》(physical Inventory for Quantitative Literacy,简称PIQL)是最近发布的一份推理清单,可用于评估从基于微积分的入门物理到高年级课程的PQL (White Brahmia et al. 2021)。然而,仍然需要在基于代数的水平上评估定量推理,这不仅包括基于代数的大学课程,还包括大学预科物理课程。我们介绍了最近的工作,使PIQL适应基于代数的上下文,以开发gerqn -基于广义方程的数量和消极性推理清单。我们报告了将基于微积分的PIQL项目调整为基于代数的GERQN的经验教训,并提供了如何将项目修改为学生近端区域的例子。我们还报告了我们将GERQN翻译成佛兰德语的经验,这是一个更大的,正在进行的研究项目的一部分,以及我们在开发评估项目,课程材料以及与学生交谈时对母语和非母语英语人士的语言可访问性的了解。
Assessing physics quantitative literacy in algebra-based physics: lessons learned
Physics quantitative literacy (PQL)—applying familiar mathematics in novel ways in the context of physics— is ubiquitous across physics classrooms. The Physics Inventory for Quantitative Literacy, or PIQL, is a recently published reasoning inventory that can be used to assess PQL from calculus-based introductory physics through upper division courses (White Brahmia et al. 2021). There remains a need, however, for assessment of quantitative reasoning at the algebra-based level which includes not only algebra-based college courses but also pre-college physics courses. We present recent work adapting the PIQL to an algebra-based context towards developing the GERQN—the Generalized Equation-based Reasoning inventory for Quantities and Negativity. We report lessons learned from our efforts to adapt items from the calculus-based PIQL to the algebra-based GERQN, and provide examples of how items were revised to be within students proximal zone. We also report on our experience translating the GERQN into Flemish as part of a larger, on-going research project, and what we learned about language accessibility for native and non-native English speakers alike for developing assessment items, curricular materials, and when speaking with students.