Open Access
| Issue |
E3S Web Conf.
Volume 706, 2026
3rd International Conference on Environment, Green Technology, and Digital Society (INTERCONNECTS 2025)
|
|
|---|---|---|
| Article Number | 01002 | |
| Number of page(s) | 12 | |
| Section | Environmental and Health Science | |
| DOI | https://doi.org/10.1051/e3sconf/202670601002 | |
| Published online | 21 April 2026 | |
- Amiruddin, M.Z.B. A Decade of TPACK in Science Education: Trends and Implications. J. Pedagog. Res. 2024, 8, 466–488. [Google Scholar]
- Profile of TPACK Abilities among Chemistry Teachers. Adv. Chem. Educ. 2025. [Google Scholar]
- Green Chemistry Teaching in Higher Education. Chem. Educ. Res. Pract. 2016. [Google Scholar]
- Shakya, H.; Yadav, S.; Kumar, A.; Gupta, D. Green Catalyst and Reagents. In Green Chemistry: A Path to Sustainable Development; 2025; pp. 37–64. [Google Scholar]
- Hassan, A.I.; Saleh, H.M. Principles of Green Chemistry. In Materials Horizons: From Nature to Nanomaterials; 2021; pp. 15–32. [Google Scholar]
- Khasyyatillah, I.; Osman, K. Use of Instructional Design, Instructional Strategy, and Learning Theory in Mobile Learning Application Development. In Lecture Notes in Networks and Systems; 2022; Vol. 456, pp. 457–484. [Google Scholar]
- Bonafini, F.C.; Lee, Y. Portraying Mathematics Pre-Service Teachers’ Experience of Creating Video Lessons with Portable Interactive Whiteboards through the TPACK. New Educ. 2021, 17, 327–352, doi:10.1080/1547688X.2021.1980167. [Google Scholar]
- Shija, D. An Open-Source Smartphone App for Quantitative Evaluation of TLC Analyses in Medicine Quality Screening. Sci. Rep. 2022, 12. [Google Scholar]
- Kapici, H.O.; Akcay, H. Improving Student Teachers’ TPACK Self-Efficacy through Lesson Planning Practice in the Virtual Platform. Educ. Stud. 2023, 49, 76–98, doi:10.1080/03055698.2020.1835610. [Google Scholar]
- Fujii, H. Decomposition Analysis of Green Chemical Technology Inventions from 1971 to 2010 in Japan. J. Clean. Prod. 2010, 112, 4835–4843. [Google Scholar]
- Mac Fhionnlaoich, N.; Ibsen, S.; Serrano, L.S.; Taylor, A.; Qi, R.; Guldin, S. A Toolkit to Quantify Target Compound in Thin-Layer-Chromatograph Experiments. J. Chem. Educ. 95, 2191–2196. [Google Scholar]
- Gusman, T.A.; Zakiyyah; Nurudin, A.; Yulina, I.K. Development Herbal Syrup from Shallot Skin: The Effect of CMC Addition for Bioactive Compound and Proximate Content. In Proceedings of the E3S Web of Conferences. [Google Scholar]
- Winarty, E.; Wardat, Y.; Setiawan, A.; Iksan, Z.H.; Rauf, R.A.A. Developing 21st Century Skill Through STEM-Based Lesson Study and Project-Based Approaches in Chemistry Learning. Educ. Process Int. J. 2025, 19, 1–12, doi:10.22521/edupij.2025.19.534. [Google Scholar]
- Cahyani, M.D.; Gusman, T.A.; Akbar, A.Y. Profile of Green Chemistry on Chemistry Education Students: Study on Developing Green Chemistry Practical Module to Support Sustainable Development Goals (SDGs). J. Penelit. Pendidik. IPA 2024, 10, 7954–7959, doi:10.29303/jppipa.v10i10.7796. [Google Scholar]
- Gusman, T.A.; Sodikin; Cahyani, M.D. The Implementation of STEM-Integrated Project-Based Learning (PjBL) to Improve Students’ Critical Thinking Skills. J. Educ. Sci. 10, 71–84, doi:10.31258/jes.10.1.p.71-84. [Google Scholar]
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