Yullys Helsa
Padang State University

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Investigating the Impact of STEAM Learning on Higher Order Thinking and Science Achievement Linda Juliharti; Abna Hidayati; Yullys Helsa; Asrizal Asrizal
Ta'dib Vol 27, No 1 (2024)
Publisher : Universitas Islam Negeri Mahmud Yunus Batusangkar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31958/jt.v27i1.12270

Abstract

Development of the industrial era 4.0 emphasizes the need for higher-order thinking skills (HOTS), especially in science and science learning in elementary schools. The low level of high-level thinking skills and science learning outcomes of elementary school students is a current problem. This research aims to determine the effect of implementing the STEAM (Science, Technology, Engineering, Arts, Mathematics) Learning Model on high-level thinking skills and learning outcomes in Natural and Social Sciences (IPAS) of class V students at SDN 18 Kampung Durian. This type of research is quantitative research. The research design used was Nonequivalent Control Group Design. The population in this study were all class V students at SDN 18 Kampung Durian, totaling 52 students consisting of 26 students in class VA (experiment) and 26 student class VB (control). The data were analize using a prerequisite test in the form of a normality test, then homogeneity, and hypothesis testing using the t-test. The research results show that the application of the STEAM Learning Model significantly improves students' high-level thinking skills and science learning outcomes compared to conventional learning. The average score of evaluation of higher-order thinking skills and science learning outcomes in the experimental group was significantly higher than in the control group. The t-test statistical test of critical thinking skills and students' science learning outcomes showed significant differences between the two groups (Sig.0.000>0.05). STEAM learning can be an effective alternative to enrich students' learning experiences, provide real-world science contexts, and stimulate the development of higher-order thinking skills. 
Investigating the Impact of STEAM Learning on Higher Order Thinking and Science Achievement Linda Juliharti; Abna Hidayati; Yullys Helsa; Asrizal Asrizal
Ta'dib Vol 27 No 1 (2024)
Publisher : Universitas Islam Negeri Mahmud Yunus Batusangkar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31958/jt.v27i1.12270

Abstract

Development of the industrial era 4.0 emphasizes the need for higher-order thinking skills (HOTS), especially in science and science learning in elementary schools. The low level of high-level thinking skills and science learning outcomes of elementary school students is a current problem. This research aims to determine the effect of implementing the STEAM (Science, Technology, Engineering, Arts, Mathematics) Learning Model on high-level thinking skills and learning outcomes in Natural and Social Sciences (IPAS) of class V students at SDN 18 Kampung Durian. This type of research is quantitative research. The research design used was Nonequivalent Control Group Design. The population in this study were all class V students at SDN 18 Kampung Durian, totaling 52 students consisting of 26 students in class VA (experiment) and 26 student class VB (control). The data were analize using a prerequisite test in the form of a normality test, then homogeneity, and hypothesis testing using the t-test. The research results show that the application of the STEAM Learning Model significantly improves students' high-level thinking skills and science learning outcomes compared to conventional learning. The average score of evaluation of higher-order thinking skills and science learning outcomes in the experimental group was significantly higher than in the control group. The t-test statistical test of critical thinking skills and students' science learning outcomes showed significant differences between the two groups (Sig.0.000>0.05). STEAM learning can be an effective alternative to enrich students' learning experiences, provide real-world science contexts, and stimulate the development of higher-order thinking skills. 
Empowering Digital Pedagogy through ICT-Based Deep Learning for Numeracy and Computational Thinking in Elementary Schools Yullys Helsa; Syafri Arlis; Melva Zainil; Hutkemri Zulnaidi; Bayu Rachman
Bubungan Tinggi: Jurnal Pengabdian Masyarakat Vol 8, No 1 (2026): FEBRUARY 2026
Publisher : Universitas Lambung Mangkurat

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/btjpm.v8i1.17314

Abstract

This community service program aimed to strengthen elementary school teachers’ capacity to integrate ICT-based deep learning pedagogy in improving students’ numeracy and computational thinking (CT) literacy. The program involved 30 teachers within a local Teacher Learning Community and was implemented through participatory workshops and structured mentoring using a one-group pre-test–post-test design to examine program impact. The intervention focused on enhancing teachers’ competence in designing ICT-integrated lesson plans, learning activities, and assessments aligned with numeracy and CT indicators. Data were collected through teacher self-assessment, classroom observation, and students’ pre- and post-tests and analyzed descriptively to determine mean improvement and percentage gain. The results demonstrated a 24% increase in teachers’ ICT pedagogical competence, indicating strengthened instructional capacity. As a follow-up impact of improved teaching practice, students’ numeracy achievement increased by 24%, and computational thinking performance improved by 20%. These findings confirm that empowering teachers through ICT-integrated deep learning contributes to measurable improvements in instructional quality and supports the development of higher-order literacy skills. Overall, the program achieved its objective by reinforcing teacher capacity as the primary outcome, with positive learning gains emerging as a direct pedagogical impact within elementary classrooms.