Profile of Mathematical Representation Ability to Solve Mechanical Wave Matter Physics Problems

Dita Fitriani, I. K. Mahardika, B. Supriadi
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Abstract

Physical Science develops through a series of scientific processes and cannot be understood by memorization, but rather requires understanding concepts so physicists use various forms of representation. The mathematical representation approach is often used in physics learning. This study aims to examine more deeply the ability of mathematical representation of students of SMA Negeri 1 Cluring class XI MIPA in solving mechanical wave problems. The research method used is descriptive quantitative. The data collection technique used is a written test consisting of five description questions based on mathematical representations of mechanical wave material, interviews, observations, and documentation. The results of the study obtained the average mathematical representation ability of students in solving mechanical wave matter physics problems thanks to the "excellent" category of 68.89%, the "good" category of 9.29%, the "good enough" category of 8.69%, the "not good" category of 1.90%, and 11.24% of students categorized as fail in solving physics problems using mathematical representations of mechanical wave matter.
解决机械波物质物理问题的数学表示能力概况
物理科学是通过一系列科学过程发展起来的,不能通过记忆来理解,而是需要理解概念,因此物理学家使用各种形式的表征。数学表示法在物理学习中经常被使用。本研究采用描述性定量研究方法。使用的数据收集技术是一种笔试,包括五个描述问题,这些问题基于机械波材料、访谈、观察和文件的数学表示。研究结果得出学生在解决机械波物质物理问题中的平均数学表示能力,其中“优秀”的占68.89%,“良好”的占9.29%,“足够好”的占8.69%,“不太好”的占1.90%,11.24%的学生在使用机械波物质的数学表示解决物理问题中被归为不合格。
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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