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Journal : Variabel

Multi Representation Ability of Students in Solving Physics Problems on Straight Motion Paulina Nelce Mole; Rambu Ririnsia Harra Hau; Agustina Elizabeth
Variabel Vol 5, No 1 (2022): APRIL 2022
Publisher : STKIP Singkawang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26737/var.v5i1.2592

Abstract

This study aims to describe the students' multi representation abilities in solving descriptive questions on straight motion material. This was qualitative research with an analytic descriptive approach. The subjects of this study were three physics teachers and twenty-five students of class X MIA SMA Negeri 1 Maumere. The data used in this study were evaluation questions, physical evaluation scores, student worksheets on evaluation questions and interview results. The data collection techniques used in this study were as follows: Documentation and in-depth interviews. For qualitative research data to be accounted for as scientific research, In this study, using triangulation techniques, checking data to the same source with different techniques, namely the results of observations, students' answers, and in-depth interviews. Data analysis techniques used in this study were grounded theory. The steps of grounded theory were: creating categories for the information obtained (open coding), selecting one of the categories and placing it in a theoretical model (axial coding), and then compiling a story of the relationship between these categories (selective coding). The results showed that students tend to use the same representation, such as verbal 12.5%, mathematical 87.5%, while graphics and pictures were 0%. For each category, students: (a) in the low category received a mathematical representation score of 73.81% and verbal representation was 83.3%, (b) in the moderate category received a verbal representation score of 85% and mathematically 83.06% (c) in the high category obtained a verbal representation score of 83.3% and mathematics 90.47%.
Teori Belajar Bruner dalam Pembelajaran Fisika: Tinjauan Pustaka Harra Hau, Rambu Ririnsia; Agung, Bertolomeus Haryanto; Mole, Paulina Nelce; Sabawaly, Diana Reby; Dendo, Anderias
Variabel Vol 8, No 1 (2025): APRIL 2025
Publisher : STKIP Singkawang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26737/var.v8i1.6662

Abstract

Artikel ini bertujuan untuk menyajikan pemahaman mengenai teori belajar Bruner dalam penerapannya pada kegiatan pembelajaran fisika. Metode yang digunakan dalam artikel ini yaitu studi litertur dengan meninjau berbagai sumber referensi yang relevan dengan penerapan teori Bruner dalam proses pembelajaran fisika. Data-data sekunder diperoleh dari jurnal ilmiah dan buku teks atau data yang tersedia. Hasil yang ditemukan bahwa tujuan belajar fisika Bruner yaitu belajar penemuan dengan tahapan enaktif, ikonik, dan simbolik. Hal ini diperoleh dari berbagai model-model pembelajaran yang berorientasi siswa menemukan sendiri konsep fisika dengan keterampilan proses sains yang dimiliki, diantaranya model pembelajaran Discovery, Inquiry, dan Project Based Learning.Kata Kunci: Fisika; Pembelajaran; Teori Belajar Bruner Bruner's Learning Theory in Physics Learning: A Literature ReviewABSTRACTThis article aims to present an understanding of Bruner's learning theory in its application to physics learning activities. The method used in this article was a literature study by reviewing various reference sources relevant to the application of Bruner's theory in the physics learning process. Secondary data were obtained from scientific journals and textbooks or available data. The results found that Bruner's physics learning objectives are discovery learning with enactive, iconic, and symbolic stages. This was obtained from various learning models oriented to students discovering their physics concepts with their science process skills including Discovery, Inquiry, and Project-Based Learning models.