Fifin Eka Yuliana
Universitas PGRI Semarang

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The Effectiveness of the Cabri 3D Media-Assisted Deep Learning Approach in Learning Spatial Structures for Fifth Grade Elementary School Students Desi Aryani Desi; Fifin Eka Yuliana; Pradista Selfia
Schola Vol. 4 No. 1 (2026): May
Publisher : Universitas PGRI Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26877/schola.v4i1.3287

Abstract

This study aims to determine the effectiveness of the application of the Deep Learning approach assisted by Cabri 3D media in learning spatial geometry for fifth-grade students of SDN Karangsari 4. In this study, there was a low understanding of students on spatial geometry material due to the approach used in learning, namely the traditional teaching approach that does not involve students actively. The Deep Learning approach assisted by Cabri 3D media was applied as a solution, by emphasizing meaningful learning, mindful learning, and joyful learning. The method used was quantitative with a one-group pretest-posttest design. The research sample was 22 students of class VA. Data collection techniques included tests (pretest and posttest). Data analysis used was the normality test, homogeneity test, paired sample t-test and N Gain test. The results of the pretest value normality test obtained a sig value of 0.165, meaning the pretest value is normal, and the results of the posttest value normality test obtained a sig value of 0.194, meaning the posttest value is normal. Based on the results of the homogeneity test, a sig value of 0.926 was obtained, meaning the students' pretest and posttest values ​​were homogeneous. So both pretest and posttest values ​​were normally distributed. Based on the output results of the "Paired Samples t Test" it was found that the 2-tailed Sig value was 0.000 <0.05, so H0 was rejected and H1 was accepted. So there was an average difference between the pretest and posttest of the geometric shape material. The normality analysis of student gain with an average gain value of 0.48 was in the moderate category. Based on the series of test results, it can be said that Deep Learning assisted by Cabri 3D media is effective in learning geometric shape material.
The Effectiveness of Interactive Quizwhizzer Games with a Deep Learning Approach to Improve the Understanding of Fractional Concepts for Fifth Grade Elementary School Students Pradista Selfia Dista; Desi Aryani; Fifin Eka Yuliana
Schola Vol. 3 No. 2 (2025): November
Publisher : Universitas PGRI Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26877/schola.v3i2.3266

Abstract

evidenced by their test scores. The purpose of this study is to determine the effectiveness of using Quizwhizzer with a deep learning approach to improve the understanding of fractional concepts among fifth grade elementary school students. This study is an experimental research employing a one-group pretest posttest design. The sample consisted of fifth grade students at SDN Sendangmulyo. Data collection techniques included testing and documentation. The research instruments used were pretest and posttest questions regarding the conceptual understanding of mathematical fractions. Data analysis involved normality tests, homogeneity tests, paired sample t-tests, and N-Gain tests.The normality test results for the pretest scores yielded a significance value (sig) of 0.061, and the posttest scores yielded a sig of 0.078, indicating that both were normally distributed. Based on the homogeneity test, a sig value of 0.934 was obtained, meaning the pretest and posttest scores were homogeneous. Furthermore, the "Paired Samples t-Test" output showed a Sig (2-tailed) value of 0.000 < 0.05, resulting in the rejection of H0 and the acceptance of H1. Additionally, the N-Gain test result was 0.339, indicating an improvement in the "medium" category. Therefore, it can be concluded that the conceptual understanding of fractions among fifth-grade students can be improved through the use of Quizwhizzer with a deep learning approach in mathematics learning.