Development of STEM-Based e-Worksheets to Improve Creative Thinking Ability on the Topics of Angles


(1) Universitas Katolik Parahyangan, Indonesia
(2) Universitas Mercu Buana Yogyakarta, Indonesia


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Copyright (c) 2022 Melania Eva Wulanningtyas, Arshita Setya Ratnasari
This research aims to develop e-worksheet learning media with a STEM approach to improve junior high school students' creative thinking skills. This research is a development research using the ADDIE model. This research was conducted at 6 Catholic private junior high schools in seventh grade. The results of this study are e-worksheets that are made to meet valid, practical, and effective aspect categories. Valid aspects are obtained through the assessment of material experts and media experts with values of 77 and 63.5 and fall into the very good and good categories. The practicality aspect was obtained through small-scale tests and large-scale tests with values of 80.17 and 75.83 and were in the good category for both. The effectiveness aspect is obtained through the results of the effectiveness test which includes paired sample ttest, one sample t-test, and mean different test. Based on the paired sample t-test for the experimental class and the control class, the results showed that there was an increase in scores before using the e-worksheet and after using the e-worksheet. Based on the one sample t-test, it was found that there was an increase in students' creative thinking abilities by using eworksheets. The conclusion of this study is that e-worksheets with the STEM approach are effective for improving junior high school students' creative thinking abilities.
Keywords: ADDIE, creative thinking, e-worksheet, STEM.
Altakahyneh, B. H., & Abumusa, M. (2020). Attitudes of university students towards stem approach. International Journal of Technology in Education, 3(1), 39. https://doi.org/10.46328/ijte.v3i1.16
Angraini, L. M., Sthephani, A., & Ain, S. Q. (2021). Pengaruh bahan ajar berbasis penalaran matematis untuk meningkatkan kemampuan komunikasi matematis [influence of mathematical reasoning based teaching materials to improve mathematical communication skills]. Fibonacci: Jurnal Pendidikan Matematika dan Matematika, 7(1), 11–18. https://jurnal.umj.ac.id/index.php/fbc/article/view/ 9139
Anwari, I., Yamada, S., Unno, M., Saito, T., Suwarma, I. R., Mutakinati, L., & Kumano, Y. (2015). Implementation of authentic learning and assessment through stem education approach to improve students’ metacognitive skills. K-12 STEM Education, 1(3), 123–136. http://www.k12stemeducation.in.th/journal/article/ view/23/24
Badriyah, A., Poedjiastoeti, S., & Yuliani. (2021). Development of learning tools based on mind mapping worksheet for improving stundents’ creative thinking skills on cell material. IJORER: International Journal of Recent Educational Research, 2(5), 165–579. https://doi.org/10.46245/ijorer.v2i5.154
Barret, B. S., Moran, A. L., & Woods, J. E. (2014). STEM education k-12: perspective on integration. International Journal of STEM.Education, 1(6), pp 5-6.
Baya’a, N., & Daher, W. (2013). Mathematics teachers’ readiness to integrate ict in the classroom. International Journal of Emerging Technologies in Learning, 8(1), 46–52. https://doi.org/10.3991/ijet.v8i1.2386
Beghetto, R. A., & Kaufman, J. C. (2014). Classroom Contexts for Creativity High Ability Studies 25 (1): 53–69. doi:10.1080/13598139.2014.905247
Bybee, R. B. (2013). The Case for STEM Education: Challenges and Opportunities. City: NSTA Press
Celestin, N., & Steve, O. (2018). The implementation of integrated science technology, engineering and mathematics (stem) instruction using robotics in the middle school science classroom. International Journal of Education in Mathematics, Science and Technology,6(1),12-40
Cheung, L. (2016). Using the addie model of instructional design to teach chest radiograph interpretation. Journal of Biomedical Education, 2016, 1–6. https://doi.org/10.1155/2016/9502572
English, L. D & King, D.T. (2015). STEM learning through engineering design: fourthgrade students’ investigations in aerospace. International Journal of STEM Education, 2(14), pp18-23
Firman, H., Rustaman, N. Y., & Suwarma, I. R. (2016). Development technology and engineering literacy through stem-based education. Icieve 2015, 209–212.
https://doi.org/10.2991/icieve-15.2016.45
Fithri, S., Tenri Pada, A. U., Artika, W., Nurmaliah, C., & Hasanuddin, H. (2021). Implementasi worksheet berbasis stem untuk meningkatkan keterampilan berpikir kritis peserta didik [implementation of stem-based worksheets to improve students' critical thinking skills]. Jurnal Pendidikan Sains Indonesia, 9(4), 555–
https://doi.org/10.24815/jpsi.v9i4.20816
Fredagsvik, M. S. (2021). The challenge of supporting creativity in problem-solving projects in science: a study of teachers’ conversational practices with students. Research in Science and Technological Education, 00(00), 1–17. https://doi.org/10.1080/02635143.2021.1898359
Gustiani, I., Widodo, A., & Suwarma, I. R. (2017). Development and validation of science, technology, engineering and mathematics (stem) based instructional material. AIP Conference Proceedings, 1848(May). https://doi.org/10.1063/1.4983969
Haryonik, Y., & Bhakti, Y. B. (2018). Pengembangan bahan ajar lembar kerja siswa dengan pendekatan matematika realistik [development of student worksheet teaching materials with a realistic mathematical approach]. MaPan, 6(1), 40–55. https://doi.org/10.24252/mapan.2018v6n1a5
Hasibuan, A., Saragih, S., & Amry, Z. (2019). Development of learning devices based on realistic mathematics education to improve students’ spatial ability and motivation. International Electronic Journal of Mathematics Education, 14(2), 243–252. https://doi.org/10.29333/iejme/5729
Ismayani, A. (2016). Pengaruh penerapan stem project-based learning terhadap kreativitas matematis siswa smk [the effect of the application of stem projectbased learning on the mathematical creativity of vocational high school students]. Indonesian Elektronik Journal of Mathematics and Education, 3(4), 264-272.
Mawaddah, N., Suyitno, H., & Kartono, K. (2015). Model pembelajaran discovery learning dengan pendekatan metakognitif untuk meningkatkan metakognisi dan kemampuan berpikir kreatif matematis [discovery learning model with metacognitive approach to improve metacognition and mathematical creative thinking ability]. UJMER: Unnes Journal of Research Mathematics Education, 4(1), 10–17.
Michaluk, L., Stoiko, R., Stewart, G., Stewart, J. (2018). Beliefs and attitudes about science and mathematics in pre-service elementary teachers, stem, and non-stem majors in undergraduate physics courses, Journal of Science Education and Technology, 27(2), 99-113
Moma, L. (2015). Pengembangan instrumen berpikir kreatif matematis untuk siswa smp [development of mathematical creative thinking instrument for junior high school students]. 4(1), 27–41.
Suhono, S., & Sari, D. A. (2020). Developing students’ worksheet based educational comic for eleventh grade of vocational high school agriculture. Anglophile Journal, 1(1), 29. https://doi.org/10.51278/anglophile.v1i1.78
Suryaningsih, S., & Nurlita, R. (2021). Pentingnya lembar kerja peserta didik elektronik (e-worksheet) inovatif dalam proses pembelajaran abad 21 [the importance of innovtive electronic student worksheets (e-worksheet) in the 21st century learning process]. Jurnal Pendidikan Indonesia, 2(7), 1256–1268. https://doi.org/10.36418/japendi.v2i7.233
Suwarma, I. R., & Kumano, Y. (2019). Implementation of stem education in indonesia: teachers’ perception of stem integration into curriculum. Journal of Physics: Conference Series, 1280(5). https://doi.org/10.1088/1742-6596/1280/5/052052
Suyitno, A., & Suyitno, H. (2015). Learning therapy for students in mathematics communication correctly based-on application of newman procedure (a case of indonesian student). International Journal of Education and Research, 3(1), 529– 538.
Tambunan, H. (2021). Dampak pembelajaran online selama pandemi covid-19 terhadap resiliensi, literasi matematis dan prestasi matematika siswa [the impact of online learning during the covid-19 pandemic on resilience, mathematical literacy and students' mathematical achievement]. Jurnal Pendidikan Matematika Indonesia, 6(2), 70-76.
Widyastuti, E., & Susiana. (2019). Using the addie model to develop learning material for actuarial mathematics. Journal of Physics: Conference Series, 1188(1). https://doi.org/10.1088/1742-6596/1188/1/012052
Wijaya, T. T. (2021). How chinese students learn mathematics during the coronavirus pandemic. International Journal of Educational Research and Innovation (IJERI), 15, 1–16. https://doi.org/https://doi.org/10.46661/ijeri.4950
Wijaya, T. T., Zhou, Y., Ware, A., & Hermita, N. (2021). Improving the creative thinking skills of the next generation of mathematics teachers using dynamic mathematics software. International Journal of Emerging Technologies in Learning, 16(13), 212–226. https://doi.org/10.3991/ijet.v16i13.21535
Yayuk, E., Purwanto, As’Ari, A. R., & Subanji. (2020). Primary school students’ creative thinking skills in mathematics problem solving. European Journal of Educational Research, 9(3), 1281–1295. https://doi.org/10.12973/eu-jer.9.3.1281
Yeh, H.-C., & Tseng, S.-S. (2019). Using the addie model to nurture the development of teachers. CALL Professional Knowledge. Educational Technology & Society, 22(3), 1176–3647.
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