cover
Contact Name
Widodo WInarso
Contact Email
widodo@uinssc.ac.id
Phone
+6285659748716
Journal Mail Official
eduma.iaincrb@gmail.com
Editorial Address
F Building, Departement of Tadris Matematika, Fakultas Ilmu Tarbiyah dan Keguruan, UIN Siber Syekh Nurjati Cirebon Perjuangan By Pass Sunyaragi St, Cirebon, West Java, Indonesia
Location
Kota cirebon,
Jawa barat
INDONESIA
Eduma : Mathematics Education Learning and Teaching
ISSN : 20863918     EISSN : 25025309     DOI : https://doi.org/10.24235/eduma
Core Subject :
EduMa Mathematics Education Learning and Teaching ISSN 2502 5309 electronic ISSN 2086 3918 print is a peer reviewed journal dedicated to the dissemination of research outcomes developmental initiatives studies and innovative ideas in the field of Mathematics Education. EduMa is an open platform welcoming researchers academics practitioners and observers of mathematics education. The journal promotes high quality research and scholarly contributions that advance Mathematics Education. Focus EduMa publishes cutting edge research in mathematics education with emphasis on student learning innovative use of media and multimedia effective didactic design curriculum development assessment teacher professional development and practical applications of mathematics. Particular attention is given to the context of Indonesia and Southeast Asia including regional challenges solutions and best practices that can inform mathematics education globally. Scope Research on effective mathematics teaching and learning strategies Development of mathematics teaching materials and learning resources Development and evaluation of mathematics education curricula Application of statistical methods in mathematics education research Technological innovation and multimedia based learning in mathematics Assessment and evaluation of mathematics learning outcomes Professional development in mathematics education Practical applications of mathematics in various contexts
Arjuna Subject : -
Articles 273 Documents
The Influence of STEM Learning Approach on Mathematical Literacy Skills Abdullah Abdullah; Isnarto Isnarto; Scolastika Mariani; Isnaini Rosyida
EduMa: Mathematics education learning and teaching Vol. 14 No. 2 (2025)
Publisher : Jurusan Tadris Matematika UIN Siber Syekh Nurjati Cirebon

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24235/eduma.v14i2.24750

Abstract

Mathematical literacy is an essential competency that students need to develop in the twenty-first century. However, the 2022 Programme for International Student Assessment (PISA) results indicate that Indonesian students continue to demonstrate relatively low levels of mathematical literacy. Therefore, effective instructional innovations are required to improve this competency, one of which is the Science, Technology, Engineering, and Mathematics (STEM) learning approach. This study aimed to examine the effectiveness of the STEM learning approach in improving students' mathematical literacy through a meta-analysis. Three relevant empirical studies were analyzed. The findings revealed that two studies produced high effect sizes, while one study produced a moderate effect size. The combined effect size was 1.220507, indicating a high overall effect of the STEM learning approach on students' mathematical literacy. Furthermore, the t-test results showed a statistically significant difference between students' pretest and posttest scores. The mean pretest score was 30.15, whereas the mean posttest score increased to 62.59. These findings demonstrate that the STEM learning approach has a significant positive effect on improving students' mathematical literacy.
Implementation of Geogebra in Improving Understanding of Geometry Concepts in Junior High School Students Nur Aisyah; Nirfayanti Nirfayanti; Dedy Setyawan
EduMa: Mathematics education learning and teaching Vol. 14 No. 2 (2025)
Publisher : Jurusan Tadris Matematika UIN Siber Syekh Nurjati Cirebon

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24235/eduma.v14i2.24751

Abstract

In the digital era, the integration of information and communication technology in education is essential for enhancing students' learning experiences. This study investigates the effectiveness of GeoGebra, a dynamic mathematics software, in improving eighth-grade students' understanding of geometric concepts at MTS Negeri 1 Maros. Employing a quasi-experimental design, the research involved two groups: an experimental class using GeoGebra and a control class utilizing conventional teaching methods. Data were collected through pre-tests, post-tests, and student questionnaires. Results indicated a significant improvement in the experimental class, with an average post-test score of 84.82 compared to 71.25 in the control class, and an N-Gain of 0.804 versus 0.636, respectively. Statistical analysis confirmed a significant difference between the two groups (p < 0.001), indicating that GeoGebra effectively enhances students' understanding of geometry. Additionally, student responses were overwhelmingly positive, with 82% expressing enjoyment in learning with GeoGebra. This study concludes that GeoGebra not only improves academic performance but also fosters a more engaging and interactive learning environment, making mathematics more accessible and enjoyable for students.
Meta-Synthesis of Metacognition’s Role in Enhancing Mathematical Critical Thinking Dimas Ghulam Istiqlal; Bambang Eko Susilo; Scolastika Mariani; Isnaini Rosyida
EduMa: Mathematics education learning and teaching Vol. 14 No. 2 (2025)
Publisher : Jurusan Tadris Matematika UIN Siber Syekh Nurjati Cirebon

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24235/eduma.v14i2.24753

Abstract

This study aims to analyze and synthesize various research findings on the role of metacognition in developing students’ mathematical critical thinking skills. The method employed is a qualitative meta-synthesis using a systematic literature review approach on six published articles from 2020 to 2025 that are relevant to metacognition and critical thinking in mathematics learning. The analysis was conducted through thematic coding and cross-study interpretation to identify patterns, distinctions, and theoretical development directions. The synthesis results indicate that metacognition functions as a regulatory mechanism of intellectual awareness, guiding students to plan, monitor, and evaluate their thinking processes reflectively. The relationship between metacognition and critical thinking is reciprocal and hierarchical: metacognition serves as the foundation for critical thinking, while critical thinking reinforces metacognitive awareness through continuous reflection. These findings highlight a paradigm shift from metacognition as a teaching strategy to metacognition as a cognitive architecture. This study recommends the development of a conceptual model of the metacognitive–critical thinking cycle within mathematics learning contexts that are adaptive to students’ cognitive and cultural characteristics.