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Spatial Reasoning Difference between Civil and Mechanical Engineering Students in Learning Mechanics of Materials Course: A Case of Cross-sectional Inference

机译:民用机械工程学生材料学习力学课程的空间推理差异:横截面推理的情况

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Despite the fact that Mechanics of Materials (MM) course is laden with spatial concepts, the role of spatial skills in the learning of MM course has not been investigated adequately. This study investigated the relationship between students' performances of the MM course measured by the Mechanics of Material Concept Inventory Test and their cross sectioning ability measured by the Santa Barbara Solids Test. Participants are the freshman and sophomore students mostly majoring in civil and mechanical engineering (CE and ME) at six colleges across the United States. While CE and ME students performed almost equally on the two tests, the correlations between MMCI and SBST and its subtest scores on vertical cuts of joined objects and oblique cuts of simple objects were higher for CE than for ME students. As the results, the percentages of variance explained by cross-sectioning abilities in the performance of Mechanics of Materials course were higher for CE than for ME students. It was interpreted that a good cross-sectional reasoning skill is more important in learning the MM course for CE students than it is for ME students. Instructors and future research may use SBST, its subtests, and students' engineering fields to predict students' learning outcomes of the MM course.
机译:尽管材料机械(MM)课程的机械概念载有空间概念,但空间技能在学习MM课程中的作用尚未充分调查。本研究调查了学生通过材料概念库存试验机制测量的MM课程的性能与Santa Barbara固体试验测量的横截面能力的关系。参与者是在美国六所大学的民用和机械工程(CE和ME)主要占据的新生和二年级学生。虽然CE和ME学生几乎同样在两次测试中表现出色,但MMCI和SBST之间的相关性及其在连接物体的垂直切割上的分数和简单对象的倾斜切割的分数比我为我的学生更高。结果,在材料机械过程中横截面能力解释的方差百分比对于CE而不是对我的学生来说更高。它被解释说,一个良好的横断面推理技能在学习CE学生的MM课程方面更为重要,而不是对我来说是学生。指导员和未来的研究可以使用SBST,其子元质和学生的工程领域来预测学生的学生学习结果。

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