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Journal of Research in Science and Mathematics Education
Published by Edupedia Publisher
ISSN : -     EISSN : 29625521     DOI : https://doi.org/10.56855/jrsme.v1i1.11
Core Subject : Science, Education,
Journal of Research in Science and Mathematics Education (J-RSME) is a journal to publish works in the form of research results, theoretical studies and review results that are original and have a novelty as a contribution to science in the scope of mathematics education, physics education, chemistry education, biology education and also includes research results in the field of mathematics, physics, chemistry and biology.
Articles 9 Documents
Search results for , issue "vol. 5 no. 2 (2026): current issue - in progress" : 9 Documents clear
Redefining Mathematics Teaching: How Online Professional Development Influences Teachers’ Efficacy, Burnout, and Reflection Supratman Supratman; La Ode Sirad; Facharuddin Mustari
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2060

Abstract

Purpose: Online professional development has emerged as a promising approach for strengthening mathematics teachers' professional competence and supporting effective statistics instruction. This study examined the effects of online professional development on high school mathematics teachers' self-efficacy, burnout, and self-reflection, and explored its implications for improving statistical thinking instruction. Methodology: An explanatory sequential mixed-methods design was employed involving 21 mathematics teachers from three public senior high schools in Kolaka District, Indonesia. Quantitative data were collected using validated pretest–posttest measures of self-efficacy, burnout, and self-reflection, followed by semi-structured interviews to explain the quantitative results. Findings: Paired-sample t-tests revealed significant changes across all variables (p < .001). Self-efficacy increased from 118.00 to 130.00, self-reflection improved from 63.14 to 67.14, and burnout decreased from 317.05 to 294.05 following the intervention. Qualitative analysis identified three interconnected themes: strengthened teaching confidence, persistent workload-related burnout despite collegial support, and enhanced reflective practice. Significance: These findings indicate that online professional development effectively improves teachers' confidence and reflective capacity while promoting pedagogical competence in statistical education. Nevertheless, qualitative evidence suggests that professional workload remains a continuing challenge, underscoring the complexity of sustaining teacher well-being during professional learning. Overall, the findings demonstrate that well-designed online professional development can enhance instructional quality and foster supportive learning environments. Professional development initiatives should therefore integrate structured reflective activities, collaborative learning communities, and workload management strategies to maximize teacher learning while safeguarding psychological well-being.
The Effect of Digital Literacy and Reading Literacy on the Statistical Literacy of Higher Education Students Edi Susanto; Pratiwi Disha Stanggo; Ringki Agustinsa; Syafdi Mayzora
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
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Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2129

Abstract

Purpose: Statistical literacy has emerged as a fundamental competency in higher education, enabling students to critically interpret, evaluate, and communicate data in an increasingly data-driven society. This study investigated the contributions of digital literacy and reading literacy to university students' statistical literacy. Methodology: A quantitative correlational design was employed with 147 students from three academic departments within the Faculty of Teacher Training and Education, University of Bengkulu. Data were collected using validated instruments measuring digital literacy, reading literacy, and statistical literacy and analyzed through descriptive statistics and multiple linear regression. Findings: Both digital literacy (β = 0.344, p < .001) and reading literacy (β = 0.431, p < .001) exerted significant positive effects on statistical literacy, with the regression model explaining 43.5% of the variance. Reading literacy demonstrated a stronger predictive influence, underscoring the importance of comprehending, evaluating, and synthesizing written information in developing statistical reasoning. Although participants reported relatively high levels of digital and reading literacy, their statistical literacy remained comparatively lower across all departments, suggesting that technological proficiency alone is insufficient to cultivate robust statistical competence. Significance: The findings conceptualize statistical literacy as a multidimensional competency requiring the integration of digital, cognitive, and interpretive skills. Strengthening digital literacy alongside reading literacy can substantially enhance students' capacity to interpret and apply statistical information. Accordingly, higher education institutions should embed authentic data-analysis tasks, digital learning resources, and critical reading practices within statistics instruction to better prepare graduates for evidence-based decision-making in increasingly data-intensive contexts.
Exploring the Critical Thinking Structures of Low-Achieving Students in Solving Algebra HOTS Tasks Hendra Kartika; Daiki Urayama; Siti Mutmainah; Hodiyanto Hodiyanto
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2143

Abstract

Purpose: Low achievement in mathematics remains a critical concern in supporting students’ meaningful learning and cognitive development. This study explored the critical thinking skills of junior high school students with low mathematics achievement. Specifically, the study aimed to identify the structures of students’ critical thinking based on the FRISCO framework, encompassing Focus, Reasons, Inference, Situation, Clarity, and Overview. Methodology: This study adopted a qualitative case study design to provide an in-depth understanding of students’ critical thinking structures. Ten seventh-grade students with low mathematics achievement were purposively selected as participants. Data were collected through open-ended algebraic Higher-Order Thinking Skills (HOTS) tasks and semi-structured follow-up interviews. The collected data were subsequently analyzed using content analysis to identify patterns and characteristics of students’ critical thinking processes. Findings: The findings indicate that most participants encountered substantial difficulties in identifying core problems, recognizing procedural errors, providing justification, and formulating valid conclusions. Two dominant patterns emerged: (1) absence of focus accompanied by invalid reasoning and false inference; and (2) presence of focus without adequate reasoning, with limited inferential coherence. Significance: These findings indicate that students’ critical thinking remains insufficiently developed and point to the need for more systematic and structured pedagogical support in algebraic HOTS contexts.
Implementasi Model Pembelajaran Talking Stick yang Dibantu Manipulatif Stinepo pada Operasi Pengurangan Bilangan Bulat di Kelas VII Pitriana Tandililing; Mayor M.H. Manurung; Annisa Kurnia Sari
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2193

Abstract

Purpose: Teaching integer subtraction remains challenging because many students rely on procedural rules rather than conceptual understanding. This study aimed to investigate the implementation of the Talking Stick cooperative learning model assisted by Stinepo manipulatives and to describe students’ affective participation and learning outcomes in Grade 7 mathematics. Methodology: A descriptive mixed-methods classroom implementation design was conducted with 15 Grade 7 students at MTs Muhammadiyah Jayapura. Data were collected through classroom observation, learning documentation, group worksheets, affective assessment, and an individual written test, and were analyzed descriptively. The learning process integrated structured preparation, concept explanation, cooperative group discussion, concrete representation of integer subtraction using Stinepo, game-based questioning through the Talking Stick strategy, and individual assessment. Findings: The findings showed that the approach promoted active classroom participation, collaboration, responsibility, confidence, and conceptual engagement. Students achieved a total affective score of 202 out of 240, equivalent to an average converted score of 3.37, indicating a very good level of participation. The mean written test score was 76.33, and 12 of the 15 students (80%) achieved the school mastery criterion. Significance: The integration of cooperative learning and low-cost manipulatives enabled students to connect concrete representations with symbolic reasoning while increasing individual accountability during mathematical discussions. These findings suggest that combining the Talking Stick model with Stinepo manipulatives provides a practical and effective instructional strategy for improving conceptual understanding and classroom engagement in teaching integer subtraction, particularly in resource-limited mathematics classrooms.
PENERAPAN MODEL PEMBELAJARAN KOOPERATIF TIPE JIGSAW TERHADAP PEMAHAMAN PESERTA DIDIK PADA MATERI PENYAJIAN DATA DALAM BENTUK DIAGRAM Gabriela Hariati Darin; Raoda Ismail; Elsi Sirampun; Bettisari Napitupulu; Pitriana Tandililing
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2186

Abstract

Purpose: Conceptual understanding is fundamental to mathematics learning because it enables students to interpret and apply mathematical concepts meaningfully. In learning data presentation, students are expected to construct and interpret statistical diagrams. However, preliminary observations at YPK Hedam Abepura Junior High School revealed that many students experienced difficulties in these tasks, while teacher-centered instruction limited active participation. This study explored the implementation of the Jigsaw cooperative learning model and its contribution to students’ conceptual understanding of data presentation in diagram form. Methodology: A descriptive qualitative design was employed involving one mathematics teacher and 23 seventh-grade students. Data were collected through classroom observations, interviews, individual tests, and documentation. Trustworthiness was established through data source and method triangulation, and data were analyzed using the interactive model of Miles, Huberman, and Saldaña. Findings: The findings indicate that the Jigsaw cooperative learning model was implemented systematically in accordance with its instructional procedures. The use of home and expert groups promoted active participation, collaboration, responsibility, self-confidence, curiosity, and careful data interpretation. Individual test results showed that 18 of the 23 students achieved the minimum mastery criterion, whereas five students encountered difficulties, particularly in constructing pie charts. Significance: Overall, the findings suggest that the Jigsaw cooperative learning model enhances students’ conceptual understanding by facilitating collaborative knowledge construction through peer discussion and shared learning responsibilities. Nevertheless, because the study involved a single class and was conducted over only two instructional sessions, the findings should be interpreted cautiously when considering their transferability to other educational contexts.
Penerepan Model Pembelajaran Kooperatif Tipe Student Teams Achievement Division (STAD) pada Materi Kekongruenan Bangun Datar Halimatussa’diah; Raoda Ismail; Pitriana Tandililing; Dewi Kristika Findia Ning Tyas; Elsi Sirampun
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2189

Abstract

Purpose: This study aimed to describe the implementation of the Student Teams Achievement Division (STAD) cooperative learning model, students’ responses and engagement during the learning process, and students’ conceptual understanding of plane figure congruence. Methodology: This study employed a descriptive method with a qualitative approach and was conducted in Grade 7 of Muhammadiyah Junior High School Jayapura during the 2025/2026 academic year, involving 30 students as research participants. Data were collected through observations, interviews, tests, and documentation. Data validity was ensured through source triangulation and technique triangulation, while data analysis was carried out using the Miles and Huberman interactive model, which consists of data reduction, data display, and conclusion drawing. Findings: The findings revealed that the STAD cooperative learning model was implemented in accordance with the planned instructional stages: class presentation, team study, quizzes, individual improvement scores, and team recognition. During the learning process, students demonstrated positive responses through active participation in group discussions, confidence in expressing their opinions, and collaboration in completing assigned tasks. Significance: Interactions among students within heterogeneous groups provided opportunities for peer support in understanding the concept of plane figure congruence. Students’ conceptual understanding was reflected in their ability to identify corresponding elements of congruent figures, explain concepts in their own words, and solve problems related to the material being studied. Overall, the findings indicate that STAD supports active student engagement and the development of conceptual understanding of plane figure congruence.
Pengaruh Gaya Belajar dan Kemandirian Belajar terhadap Hasil Belajar Matematika Siswa di Kelas VIII SMP YPK Kotaraja Wa Ode Chelsi Nur; Happy Lumbantobing; Rian Efendi; Raoda Ismail; Dewi Kristika Findya Ning Tyas; Agnes Teresa Panjaitan; Mayor Manurung; Elieser Kulimbang
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2254

Abstract

Purpose: This study examined the individual and joint effects among Grade 7 students at SMP YPK Kotaraja, Papua, Indonesia. Methodology: A quantitative ex post facto design was employed with 129 students selected proportionally from a population of 187. Data were obtained through validated questionnaires measuring visual, auditory, and kinesthetic learning styles and self-regulated learning, together with official mathematics grades. Simple and multiple linear regression analyses were used after the data met assumptions. Findings: The results showed that learning styles and self-regulated learning each significantly predicted mathematics learning outcomes, with self-regulated learning exerting the stronger contribution. When examined simultaneously, both variables explained 82.3% of the variance in mathematics learning outcomes. The visual learning style predominated, representing 51.94% of the sample. These findings indicate that students’ capacity to plan, monitor, regulate, and evaluate their learning is more strongly associated with mathematics achievement than learning preferences alone. Significance: Learning styles remain relevant for designing responsive instruction, but instructional strategies should prioritize learner autonomy, responsibility, and active engagement. Overall, strengthening self-regulated learning while accommodating diverse learning styles may support improved mathematics learning outcomes and more responsive mathematics instruction in underrepresented educational contexts.
ANALISIS KEMAMPUAN BERPIKIR KOMPUTASIONAL MATEMATIS PADA MATERI STATISTIKA DITINJAU DARI MINAT BELAJAR SISWA DI SMA Nofia Tri Jayanti; Ishaq Nuriadin
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2296

Abstract

Purpose: Computational thinking is increasingly recognized as a critical competency in mathematics education, particularly for enabling students to formulate, analyze, and solve complex problems. However, students’ engagement in computational thinking may vary according to their level of learning interest. Methodology: This qualitative case study examined students’ mathematical computational thinking in statistics across different levels of learning interest. Participants were 31 eleventh-grade students at a senior high school in East Jakarta, Indonesia. Based on a learning-interest questionnaire, students were classified into high, moderate, and low interest groups, from which three representative students were purposively selected for in-depth analysis. Data were collected through a mathematical computational thinking test and semi-structured interviews and analyzed thematically using four indicators: decomposition, pattern recognition, abstraction, and algorithmic thinking. Findings: The findings demonstrated differentiated computational thinking profiles across the three levels of learning interest. The highly interested student demonstrated all four indicators and applied systematic, coherent, and logically structured problem-solving strategies. The moderately interested student exhibited adequate conceptual understanding but experienced difficulties in articulating complete and logically organized solution procedures. The student with low learning interest encountered difficulties across all four indicators, particularly in identifying relevant information, recognizing patterns, abstracting essential concepts, and constructing logical solution procedures. Significance: Within the context of this study, learning interest was associated with variations in students’ mathematical computational thinking in statistics. These findings highlight the importance of instructional approaches that concurrently foster learning interest and strengthen students’ computational thinking capabilities in mathematical problem solving.
Cognitive Barriers in Reconstructing the Concepts of Squares and Triangles Among Adventitiously Blind Students Siti Mutmainah; Mega Suliani
Journal of Research in Science and Mathematics Education Vol. 5 No. 2 (2026): Current Issue - In Progress
Publisher : EDUPEDIA PUBLISHER

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56855/jrsme.v5i2.2415

Abstract

Purpose: Geometric concept reconstruction requires learners to identify, integrate, and verify defining attributes of shapes within coherent conceptual structures. For adventitiously blind students, this process is particularly complex because prior visual experiences must be coordinated with tactile information obtained after vision loss. Methodology: This exploratory single-case study aimed to analyze the cognitive barriers experienced by an adventitiously blind junior high school student in reconstructing the concepts of squares and triangles through tactile manipulation. Data were collected through concept reconstruction tasks using wooden sticks, observations of tactile exploration, photographic documentation, and semi-structured interviews. The data were analyzed using thematic coding supported by triangulation across observation, interview, and documentation sources. Findings: The findings showed that the participant identified geometric figures primarily based on the number of sides. Although the triangle was reconstructed as a closed figure, the square reconstruction did not fully satisfy formal geometric properties because closure, side relationships, and overall regularity were not consistently coordinated. Three interrelated cognitive barriers emerged: geometric attribute integration, representational translation, and geometric verification. Significance: These barriers appeared to form an interconnected sequence within the participant's tactile concept reconstruction process. The findings suggest that geometry instruction for adventitiously blind learners should provide explicit scaffolding for integrating attributes, translating conceptual knowledge into tactile actions, and verifying geometric structures holistically.

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