Training on Lesson Plan of Climate Change STEM Project in the Physics Learning for Sustainable Development

Nurita Apridiana Lestari, Budi Jatmiko, Eko Hariyono, D Dwikoranto, Binar Kurnia Prahani

Abstract


Climate change education holds great potential but often fails to raise sufficient awareness of climate-related disasters. Students need localized, STEM-based learning to build adaptation strategies and eco-friendly lifestyles. This article focuses on improving students' understanding of physics concepts, problem-solving, and critical and creative thinking, aligning with the SDGs and Merdeka Curriculum goals. Using the Participatory Action Research (PAR) method, training activities involved observation, reflection, planning, action, and evaluation stages. Needs analysis discussions with teachers from Nganjuk Regency's MGMP informed the program. Training included STEM-based project learning focused on climate change and engaging physics and science teachers. Questionnaire analysis showed high enthusiasm for the program, as it integrated STEM with real-world climate issues, making learning relevant and motivating. This innovative approach fostered critical thinking and problem-solving while enhancing awareness and responsibility toward climate challenges. By connecting education to sustainability, the program encouraged students to develop eco-friendly solutions and actively participate in addressing global issues, preparing them to become agents of change.


Keywords


Climate change; STEM project; Sustainable development

Full Text:

PDF

References


Afriani, A. (2018). Pembelajaran kontekstual (contextual teaching and learning) dan pemahaman konsep siswa. Jurnal Al-Muta’aliyah, 1 (3): 80-88

Chotimah, A. N. (2019). Pengaruh pengetahuan dan sikap masyarakat terhadap kesiapsiagaan menghadapi bencana longsor di Pasir Jaya Bogor. JMB: Jurnal Manajemen Bencana, 5(2).

Direktorat Guru Dan Tenaga Kependidikan Kemendikbur RI. (2021). Buku Kurikulum Sekolah Penggerak. Jakarta: Kemendikbud RI.

Direktorat Guru Dan Tenaga Kependidikan Kemendikbur RI. (2021). Materi Pelatihan Program Sekolah Penggerak-Ringkasan Materi. Jakarta: Kemendikbud RI.

Hamad N. M. A., Adewusi, O.E., Unachukwu, C. C., Osawaru, B., & Chisom, O. N. (2024). A Review on the innovative approaches to STEM education. International Journal Of Science And Research Archive, 11(1), 244–252. Https://Doi.Org/10.30574/Ijsra.2024.11.1.0026

Kumparan. (2017). Apa penyebab bencana tanah bergerak?, (Online: Https://Kumparan.Com/Kumparannews/Apa-Penyebab-Bencana-Tanah-Bergerak/Full, Diakses Tanggal 5 April 2021)

Lestari, N. A., Susanti, F. M., Madlazim, M., Hariyono, E., & Uulaa, R. F. R. (2024). Integrated environmental education physics project to enhance student creativity. Momentum: Physics Education Journal, 8(1), 75–83. Https://Doi.Org/10.21067/Mpej.V8i1.9054

Maspul, K. A. (2024). Exploring STEM education for real-world climate change concerns to empower students as change agents. Journal Of Physics Education And Science, 1(2), 12. Https://Doi.Org/10.47134/Physics.V1i2.249

Nazhifah, N., Wiyono, K., & Ismet, I. (2023). Development of STEM-based e-learning on renewable energy topic to improve the students creative thinking skills. Jurnal Penelitian Pendidikan IPA, 9(11), 9575–9585. Https://Doi.Org/10.29303/Jppipa.V9i11.5206

Nugroho, O. F., Ratna Juwita, S., & Febrianti, N. (2022). STEM education planning based on contextual issues sustainable development goals (SDGs) article info abstract. Jurnal Ilmiah Pendidikan, 06(02), 159–168.

Https://Doi.Org/10.33751/Pedagonal.V6i2.5554

Ouyang, F., & Xu, W. (2024). The effects of educational robotics in stem education: a multilevel meta-analysis. In International Journal Of STEM Education (Vol. 11, Issue 1). Springer Science And Business Media Deutschland Gmbh. Https://Doi.Org/10.1186/S40594-024-00469-4

Purnomo, A. R., Yulianto, B., Mahdiannur, M. A., & Subekti, H. (2023). Embedding sustainable development goals to support curriculum merdeka using projects in biotechnology. International Journal Of Learning, Teaching And Educational Research, 22(1), 406–433. Https://Doi.Org/10.26803/Ijlter.22.1.23

Romero, A. M., Quesada Armenteros, A., & Estepa Castro, A. (2024). Promoting critical thinking through mathematics and science teacher education: the case of argumentation and graphs interpretation about climate change. European Journal Of Teacher Education, 47(1), 41–59. Https://Doi.Org/10.1080/02619768.2021.1961736

Santyasa, I. W., Rapi, N. K., & Sara, I. W. W. (2020). Project Based learning and academic procrastination of students in learning physics. International Journal Of Instruction, 13(1), 489–508. Https://Doi.Org/10.29333/Iji.2020.13132a

Solihah, P. A., Kaniawati, I., Samsudin, A., & Riandi, R. (2024). prototype of greenhouse effect for improving problem-solving skills in science, technology, engineering, and mathematics (STEM)-ESD (ESD): Literature Review, Bibliometric, And Experiment. Indonesian Journal Of Science And Technology, 9(1), 163–190.

Https://Doi.Org/10.17509/Ijost.V9i1.66773

SEAMEO Regional Centre For QITEP In Mathematics. 2021. STEAM Activities, PPT

Utami, B., Yunita, I. N., Maya, P. R., Aziz, F. I., Nur, K. A., & Nur, H. M. (2020). Empowering teachers in implementing the project to strengthen students’ pancasila profile using STEAM-based learning for optimizing sustainable development goals (SDGs) In Junior High School. Masyarakat Berdaya Dan Inovasi, 5(2), 1–7. Https://Doi.Org/10.33292/Mayadani.V5i2.190




DOI: https://doi.org/10.20527/btjpm.v7i1.13439

Refbacks

  • There are currently no refbacks.


Indexed by:

Bubungan Tinggi: Jurnal Pengabdian Masyarakat is licensed under
a Creative Commons Attribution-Share Alike 4.0

From March 27, 2020 to June 3, 2020
View My Stats

From Juni 4, 2020 to the present (updated stats)
View My Stats

hit counter