Annisa Yumna Rizq
Universitas Pendidikan Indonesia

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STUDI LITERATUR: PENGGUNAAN MEDIA PEMBELAJARAN DIGITAL DALAM MENINGKATKAN KEMAMPUAN PEMECAHAN MASALAH MATEMATIS SISWA SEKOLAH DASAR Nurul Hasna Haifa; Nurhayati; Ayu Rahayu Nurhajati; Khairunnisa Sri Handayani; Annisa Yumna Rizq; Hafiziani Eka Putri
Didaktik : Jurnal Ilmiah PGSD STKIP Subang Vol. 12 No. 02 (2026): Volume 12 No. 2, Juni 2026 Publish
Publisher : STKIP Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36989/didaktik.v12i02.13685

Abstract

Mathematical problem solving ability is one of the essential competencies that elementary school students must possess. However, in practice, many students still experience difficulties in understanding and solving mathematical problems, especially contextual problems. The low level of this ability is influenced by the use of less innovative teaching methods and the suboptimal utilization of technology in learning. This study aims to analyze the use of digital learning media in improving elementary school students’ mathematical problem solving abilities. The method used is a literature study with a qualitative descriptive approach through the review of various journals, scientific articles, and relevant previous research findings. The research data were obtained from scientific sources traced through Google Scholar and other indexed journals, then analyzed using content analysis techniques through the stages of identification, classification, and synthesis of research findings. The results of the study indicate that various digital learning media, such as Scratch, Wordwall, GeoFun, CapCut, Genially, Smart Apps Creator (SAC), interactive games, and ethnomathematics-based media, are able to significantly improve students’ mathematical problem-solving abilities. In addition to improving learning outcomes, digital media have also been proven to increase students’ motivation, engagement, and higher-order thinking skills. Therefore, digital learning media have great potential to support mathematics learning in elementary schools when designed interactively, contextually, and in accordance with students’ characteristics.
MISKONSEPSI DAN KESULITAN SISWA SEKOLAH DASAR PADA PENGENALAN KONSEP ASAM BASA: KAJIAN LITERATUR Santi Febriani; Nurul Candra Imani; Annisa Yumna Rizq; Luthfiah Hanifah; Afridha Laily Alindra
Didaktik : Jurnal Ilmiah PGSD STKIP Subang Vol. 12 No. 02 (2026): Volume 12 Nomor 02, Juni 2026 Published
Publisher : STKIP Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36989/didaktik.v12i02.14308

Abstract

Misconceptions about acid-base concepts are still frequently experienced by elementary school students because science learning tends to be teacher-centered and lacks concrete learning experiences. This condition causes students to have difficulty understanding the properties of acids and bases, the use of indicators, and the concept of pH scientifically. This study aims to examine the forms of misconceptions, causal factors, and learning strategies that can reduce student misconceptions about acid-base concepts. The research involves library research, which entails reviewing various sources relevant to the research topic, such as books, scientific articles, journals, and previous research findings. Data were obtained from ten scientific articles published between 2015 and 2025 that were relevant to the research topic. Data analysis was conducted using content analysis techniques through the process of grouping, comparing, and synthesizing research results. The results of the study indicate that student misconceptions often occur in understanding the properties of acids and bases, the use of indicators, and the classification of acidic, basic, and neutral substances. Students tend to understand concepts based on everyday experiences, such as assuming all acids are dangerous or all clear liquids are neutral. Factors causing misconceptions include less varied learning methods, minimal use of concrete media, and low student initial understanding. Experiment-based learning, the use of concrete media, and experiment-based Problem Based Learning and Visual, Auditory, Kinesthetic models have been proven to be effective in increasing students' conceptual understanding and reducing misconceptions in science learning in elementary schools.