The Effect of Algorithmic Coding Integration on Junior High School Students' Mathematical Problem-Solving Skills

In the era of the Fourth Industrial Revolution, which demands strong digital literacy, integrating algorithmic coding into mathematics instruction has emerged as an innovative strategy to address junior high school students' low mathematical problem-solving skills. This issue is particularly evident in algebra and number pattern topics among eighth-grade students at SMPN 1 Awan Rante Karua, where students experience difficulties in applying algorithmic logic systematically. This quasi-experimental study employed a pretest–posttest nonequivalent control group design involving 60 eighth-grade students divided into two groups. The experimental group received mathematics instruction integrated with algorithmic coding through Scratch, including Caesar cipher activities and linear equation loops, over eight instructional sessions, while the control group received conventional instruction. The findings revealed a significant improvement in the experimental group, with an N-Gain score of 0.72 (high category), compared with 0.45 (moderate category) in the control group. Independent-samples t-test analysis showed a statistically significant difference between the two groups (Sig. = 0.001 < 0.05). These findings demonstrate that integrating algorithmic coding into mathematics learning effectively enhances junior high school students' mathematical problem-solving skills.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-12
DOI
https://doi.org/10.5281/zenodo.22721535
Primary Topic
Mathematics Education and Pedagogy
Type
article
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article

The Effect of Algorithmic Coding Integration on Junior High School Students' Mathematical Problem-Solving Skills

Herianto Parrangan1*, Inelsi Palengka2, Sonny Yalti Duma'3
Zenodo (CERN European Organization for Nuclear Research)
Mathematics Education and Pedagogy
article

The Effect of Algorithmic Coding Integration on Junior High School Students' Mathematical Problem-Solving Skills

Herianto Parrangan1*, Inelsi Palengka2, Sonny Yalti Duma'3
article en

Abstract

In the era of the Fourth Industrial Revolution, which demands strong digital literacy, integrating algorithmic coding into mathematics instruction has emerged as an innovative strategy to address junior high school students' low mathematical problem-solving skills. This issue is particularly evident in algebra and number pattern topics among eighth-grade students at SMPN 1 Awan Rante Karua, where students experience difficulties in applying algorithmic logic systematically. This quasi-experimental study employed a pretest–posttest nonequivalent control group design involving 60 eighth-grade students divided into two groups. The experimental group received mathematics instruction integrated with algorithmic coding through Scratch, including Caesar cipher activities and linear equation loops, over eight instructional sessions, while the control group received conventional instruction. The findings revealed a significant improvement in the experimental group, with an N-Gain score of 0.72 (high category), compared with 0.45 (moderate category) in the control group. Independent-samples t-test analysis showed a statistically significant difference between the two groups (Sig. = 0.001 < 0.05). These findings demonstrate that integrating algorithmic coding into mathematics learning effectively enhances junior high school students' mathematical problem-solving skills.

Zenodo (CERN European Organization for Nuclear Research)
Quality Education
Openalex Percentile: Top 6%
Mathematics Education and Pedagogy
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The Effect of Algorithmic Coding Integration on Junior High School Students' Mathematical Problem-Solving Skills — Herianto Parrangan1*, Inelsi Palengka2, Sonny Yalti Duma'3 · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS