CREATIVE PROBLEM SOLVING AND PROCESS SKILLS IN INTEGRATED SCIENCE LEARNING
Abstract
Science learning has an important role in helping the development of intelligence for critical thinking, in the intellectual (cognitive), affective and psychomotor aspects of students. The creative problem solving model is a variation of learning with problem solving through systematic techniques in organizing creative ideas to solve a problem followed by strengthening process skills. The creative problem solving model with process skills is in accordance with the characteristics of students to investigate, try, and experiment. This learning activity is intended to foster students' abilities in using students' process skills, and students are able to become critical and independent thinkers, involving activities such as analyzing, synthesizing, making considerations, creating, and applying new knowledge to real-world situations.
Keywords: Science learning, creative problem solving model, process skills.
Pembelajaran IPA mempunyai peranan penting dalam membantu perkembangan kecerdasan untuk berpikir kritis, pada aspek intelektual (kognitif), afektif dan psikomotorik peserta didik. Model creative problem solving merupakan variasi pembelajaran dengan pemecahan masalah melalui teknik sistematis dalam mengorganisasikan ide-ide kreatif untuk menyelesaikan suatu masalah yang diikuti dengan penguatan keterampilan proses. Model creative problem solving dengan keterampilan proses sesuai dengan karakteristik peserta didik untuk menyelidiki, mencoba, dan bereksperimen. Kegiatan pembelajaran ini dimaksudkan untuk menumbuhkan kemampuan peserta didik dalam menggunakan keterampilan proses peserta didik, dan peserta didik mampu menjadi pemikir kritis dan mandiri, yang melibatkan kegiatan-kegiatan seperti menganalisis, mensintesis, membuat pertimbangan, menciptakan, dan menerapkan pengetahuan baru pada situasi dunia nyata.
Kata kunci: Pembelajaran sains, model pemecahan masalah kreatif, keterampilan proses.
Full Text:
PDFReferences
Af’idayani, N., Setiadi, I., & Fahmi, F. (2018). The effect of inquiry model on science process skills and learning outcomes. European Journal of Education Studies. https://doi.org/10.5281/zenodo.1344846
Arikunto, S. (2006). Prosedur penelitian suatu pendekatan praktik. Jakarta: PT Rineka Cipta
Bundu, P. (2006). Penilaian keterampilan proses dan sikap alamiah dalam pembelajaran sains sekolah dasar. Jakarta: Direktorat Jendral Pendidikan Tinggi.
Departemen Pendidikan dan Kebudayaan. (1995). Kamus besar bahasa Indonesia edisi kedua. Jakarta: Balai Pustaka.
Devi, P. K. (2010). Keterampilan proses dalam pembelajaran IPA untuk guru SMP. Bandung: PPPPTK IPA.
Fahmi, F., Fajeriadi, H., Irhasyuarna, Y., Suryajaya, S., & Abdullah, A. (2021). The practicality of natural science learning devices on the concept of environmental pollution with problem-solving learning models. In Journal of Physics: Conference Series (Vol. 2104, No. 1, p. 012025). IOP Publishing. https://doi.org/10.1088/1742-6596/2104/1/012025
Fahmi, F., Setiadi, I., Elmawati, D., & Sunardi, S. (2019). Discovery learning method for training critical thinking skills of students. European Journal of Education Studies. https://doi.org/10.5281/zenodo.3345924
Hamalik, O. (2008). Kurikulum dan pembelajaran. Jakarta: Bumi Aksara.
Irhasyuarna, Y., Kusasi, M., Fahmi, F., Fajeriadi, H., Aulia, W. R., Nikmah, S., & Rahili, Z. (2022). Integrated science teaching materials with local wisdom insights to improve students' critical thinking ability. BIO-INOVED: Jurnal Biologi-Inovasi Pendidikan, 4(3), 328-334. http://dx.doi.org/10.20527/bino.v4i3.14148
Irhasyuarna, Y., Kusasi, M., & Fahmi, F. (2022). Pengembangan bahan ajar IPA terpadu berbasis e-learning berwawasan kearifan lokal untuk meningkatkan keterampilan berpikir kritis mahasiswa. Repository Universitas Lambung Mangkurat.
Munandar, U. (1975). Lokakarya “creative problem solving”.
Noor, A. F., Yunus, R., Suyidno, S., & Fahmi, F. (2023). Development of predict-observe-explain (POE) based authentic problems’instructional package to improve students’critical thinking skills. Jurnal Pendidikan Matematika dan IPA, 14(1), 69-81. http://dx.doi.org/10.26418/jpmipa.v14i1.53932
Rahayu, A. B., Hadi, S., Istyadji, M., Zaini, M., Sholahuddin, A., & Fahmi, F. (2018). Development of guided inquiry based learning devices to improve student learning outcomes in science materials in middle school. European Journal of Alternative Education Studies. https://doi.org/10.5281/zenodo.2261027
Sobur, A. (2010). Psikologi umum. Bandung: Pustaka Setia
Walker, G. H. (2005). Critical thinking in asynchronous discussions. International Journal of Instrucyional Technology and Distance Learning, 2(6). https://www.itdl.org/Journal/Jun_05/Jun_05.pdf
Zoller, U., Ben-Chaim, D., & Ron, S. (2000). The disposition toward critical thinking of high school and university science students: An inter-intra isreaeli-italian study. International Journal of Science Education, 22(6). https://doi.org/10.1080/095006900289679
DOI: https://doi.org/10.20527/i.v4i2.13336
Refbacks
- There are currently no refbacks.
Copyright (c) 2024 Indonesian Journal of Science Education and Applied Science
IJSEAS has been Indexed by: This work is licensed under CC BY-SA 4.0 |



.png)




