运用范希勒理论和情境教学法解决五年级四边形学习中的问题

Debora Dwi Kurniawati, Savira Erdia Kusuma, Yulisa Ananda Putri, Haniek Sri Pratini
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引用次数: 0

摘要

本研究采用定性研究方法进行文献研究。本研究的动机是学生了解四边形的材料性质的重要性。本研究的目的是研究Van Hiele的理论和情境方法是否能有效地提高小学五年级学生对四边形材料特性的理解。范·海尔理论是专门应用于几何领域的理论,几何有5个学习阶段,即信息阶段、定向阶段、显化阶段、自由定向阶段和整合阶段。而情境方法强调7个情境要素,即:(1)建构主义,(2)询问,(3)发现,(4)学习型社会,(5)建模,(6)反思,(7)实际评估。使学习是通过知识和经验或现实世界获得的,提高学生的高阶思维过程,以学生为中心,学生活跃,批判性,创造性,解决问题,使学生在有趣,刺激,不枯燥的学习中学习,并利用各种学习资源。本研究结果表明,凡·海尔的学习理论和情境教学法能提高学生对四边形材料性质的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PROBLEM SOLVING FOR FIFTH GRADE IN QUADRILATERAL LEARNING USING VAN HIELE THEORY AND CONTEXTUAL APPROACH
This research is a literature study with a qualitative approach. This research is motivated by the importance of students' understanding of the material properties of quadrilaterals. The purpose of this study is that researchers want to find out whether Van Hiele's theory and contextual approaches are effective in increasing the understanding of fifth grade elementary school students about the material properties of quadrilaterals. Van Hiele's theory is a theory that is specifically used in the field of geometry which has 5 stages of learning, namely the information stage, the directed orientation stage, the explicitization stage, the free orientation stage, and the integration stage. While the contextual approach emphasizes on 7 contextual components, namely: (1) Constructivism, (2) Asking, (3) Finding, (4) Learning Society, (5) Modeling, (6) Reflection, (7) Actual assessment. So that learning is obtained through knowledge and experience or the real world, improving students' higher order thinking processes, student-centered, active students, critical, creative, problem solving, students learn in a fun, exciting, not boring, and use various learning resources. The results of this study indicate that there is an increase in students' understanding of the material properties of quadrilaterals by using Van Hiele's learning theory and contextual approach.
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