Brain-based learning model to explore students’ procedural fluency ability in learning quadrilateral 2D shapes

Ahmad Ahmad
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Abstract

This study aims to determine the completion of student learning in procedural fluency through the Brain Based Learning  model, along with their procedural fluency in flexibility, efficiency and accuracy in quadrilateral 2D shapes. It employed sequential explanatory research design. The research subjects were 7th graders (VII B) at SMP Negeri 2 Sokaraja, academic year 2019/2020. The data collection technique was procedural fluency test for students on quadrilateral 2D shapes; and the data analysis technique was the z-test. Results showed that students’ procedural fluency through BBL achieved learning mastery. In terms of flexibility, students were able to solve procedural fluency test questions in two ways. Students could perform each step of the method in terms of efficiency; and in terms of accuracy, it was shown that results were repeated consistently. These findings implied that procedural fluency through BBL along with students’ flexibility, efficiency, and accuracy belong to the fairly fluent category.
以脑为基础的学习模式探讨学生学习二维四边形的程序流畅性能力
本研究旨在通过基于大脑的学习模型来确定学生在程序流畅性方面的学习完成情况,以及他们在四边形二维形状的灵活性、效率和准确性方面的程序流畅性。本研究采用序贯解释研究设计。研究对象为2019/2020学年Sokaraja SMP Negeri 2的7年级(VII B)。数据收集技术为学生四边形二维图形的程序性流畅性测试;数据分析技术是z检验。结果表明,通过BBL,学生的程序流畅性达到了学习掌握。在灵活性方面,学生能够通过两种方式解决程序流畅性测试问题。学生可以按照效率执行方法的每一步;在准确性方面,研究表明结果是一致重复的。这些发现表明,通过BBL的程序流畅性以及学生的灵活性、效率和准确性属于相当流畅的类别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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