Pengembangan Materi Ajar Impuls dan Momentum Menggunakan Model Pengajaran Langsung Untuk Melatih Keterampilan Pemecahan Masalah

Authors

  • Clinton Purba Universitas Lambung Mangkurat
  • M Arifuddin Universitas Lambung Mangkurat
  • Saiyidah Mahtari Universitas Lambung Mangkurat

DOI:

https://doi.org/10.36312/jar.v3i1.1035

Keywords:

Pengajaran Langsung, Impuls dan Momentum, Hasil Belajar, Keterampilan Pemecahan Masalah

Abstract

Hasi penelitian menunjukkan peran materia ajar sangat krusial dalam pembelajaran fisika. Sayangnya, ketersediaan materia ajar yang relevan masih kurang diperhatikan sehingga keterampilan pemecahan masalah siswa masih tergolong rendah pada saat diberikan latihan soal. Tujuan penelitian ini adalah mendeskripsikan validitas, kepraktisan, dan efektivitas materi ajar fisika. Penelitian ini merupakan penelitian pengembangan menggunakan model desain ASSURE. Penelitian ini melibatkan dua validator ahli (dosen) dan satu validator praktisi (guru matapelajaran) untuk menguji validitas materi ajar. Pada tahap uji kepraktisan dan keefektifan, 27 siswa kelas X MIPA 5 di SMA Negeri 2 Banjarmasin dilibatkan dalam penelitian ini. Data penelitian diperoleh menggunakan lembar validasi materi ajar, angket respon siswa, dan tes hasil belajar siswa yang dianalisis secara deskriptif-kuantitatif. Hasil penelitian menunjukkan bahwa (1) validitas materi ajar berdasarkan lembar validasi berkategori valid (skor: 3,38) dan reliabel (r: 0.97), (2) kepraktisan materi ajar berdasarkan angket respon siswa berkategori praktis (skor: 3,08), (3) efektivitas materi ajar berdasarkan tes hasil belajar berkategori sedang (n-gain: 0,62). Berdasarkan hasil penelitian, dapat disimpulkan bahwa materi ajar impuls dan momentum yang dikembangkan valid, praktis dan efektif untuk melatihkan keterampilan pemecahan masalah dan layak untuk digunakan dalam pengajaran fisika.

Development of Teaching Materials for Impulse and Momentum Using the Direct Instruction Model to Train Problem-Solving Skills

Abstract

Research results indicate the crucial role of teaching materials in physics learning. Unfortunately, the availability of relevant teaching materials is still overlooked, resulting in students' problem-solving skills being relatively low when given problem-solving exercises. The purpose of this study is to describe the validity, practicality, and effectiveness of physics teaching materials. This research is a development study using the ASSURE design model. The study involved two expert validators (lecturers) and one practitioner validator (subject teacher) to test the validity of the teaching materials. In the practicality and effectiveness test phases, 27 students from class X MIPA 5 at SMA Negeri 2 Banjarmasin were involved in this study. Research data were obtained using teaching material validation sheets, student response questionnaires, and student learning outcome tests, which were analyzed descriptively and quantitatively. The results show that (1) the validity of teaching materials based on the validation sheet is categorized as valid (score: 3.38) and reliable (r: 0.97), (2) the practicality of teaching materials based on student response questionnaires is categorized as practical (score: 3.08), (3) the effectiveness of teaching materials based on learning outcome tests is categorized as moderate (n-gain: 0.62). Based on the research results, it can be concluded that the developed teaching materials for impulse and momentum are valid, practical, and effective for training problem-solving skills and are suitable for use in physics teaching.

References

Abdi, J., Eftekhar, H., Estebsari, F., & Sadeghi, R. (2014). Theory-Based Interventions in Physical Activity: A Systematic Review of Literature in Iran. Global Journal of Health Science, 7(3), p215. https://doi.org/10.5539/gjhs.v7n3p215

Ahliha, S., Mastuang, M., & Mahardika, A. I. (2017). Meningkatkan Hasil Belajar Siswa Kelas VIII E SMP Negeri 26 Banjarmasin Dengan Menggunakan Metode Pemecahan Masalah (Problem Solving) Dalam Setting Pengajaran Langsung. Berkala Ilmiah Pendidikan Fisika, 5(1), 118. https://doi.org/10.20527/bipf.v5i1.2894

Amarachukwu, N. N., Ibeanu, J. O., & Temitayo, S. G. (2022). Application and Constraints of Brain-Based Learning in Physics Education. Journal of Education and Practice, 6(2), 73–91. https://doi.org/10.47941/jep.952

Amrita, P. D., Jamal, M. A., & Misbah, M. (2016). Meningkatkan Kemampuan Pemecahan Masalah Siswa Melalui Model Pengajaran Langsung Pada Pembelajaran Fisika Di Kelas X MS 4 SMA Negeri 2 Banjarmasin. Berkala Ilmiah Pendidikan Fisika, 4(3), 248. https://doi.org/10.20527/bipf.v4i3.1858

Anisah, A., Wati, M., & Mahardika, A. I. (2016). Pengembangan Perangkat Pembelajaran Getaran Dan Gelombang Dengan Model Inkuiri Terstruktur Untuk Siswa Kelas VIIIA SMPN 31 Banjarmasin. Berkala Ilmiah Pendidikan Fisika, 4(1), 1. https://doi.org/10.20527/bipf.v4i1.1008

Aquino, J. M. (2022). Students’ evaluation in the developed video-based learning materials for physical education in Higher Education Institutions (HEIs). Edu Sportivo: Indonesian Journal of Physical Education, 111–124. https://doi.org/10.25299/es:ijope.2022.vol3(2).9428

Arsanti, T. A., & Yuliasari, E. (2018). Personal Factors as Predictors of Intention to Use it. Jurnal Manajemen Dan Kewirausahaan, 20(2), Article 2. https://doi.org/10.9744/jmk.20.2.129–136

Baillie, S., Decloedt, A., & Londgren, M. F. (2021). Teaching Tip: Designing Flipped Classrooms to Enhance Learning in the Clinical Skills Laboratory. Journal of Veterinary Medical Education, e20210043. https://doi.org/10.3138/jvme-2021-0043

Bajracharya, J. R. (2019). Instructional Design and Models: ASSURE and Kemp. Journal of Education and Research, 9(2), 1–8. https://doi.org/10.3126/jer.v9i2.30459

Bangun, G. J. F. Y., Wati, M., & Miriam, S. (2019). Pengembangan Modul Fisika Menggunakan Model Inkuiri Terbimbing Untuk Melatihkan Keterampilan Proses Sains dan Sikap Sosial Peserta Didik. Jurnal Ilmiah Pendidikan Fisika, 3(2), 77. https://doi.org/10.20527/jipf.v3i2.1035

Camuyong, C. S. F. (2023). Development, Validation and Effectiveness of Instructor- made Learning Course Material (LCM). International Journal of Multidisciplinary: Applied Business and Education Research, 4(2), 439–445. https://doi.org/10.11594/ijmaber.04.02.11

Cheng, M., Wang, F., & Mayer, R. E. (2023). Benefits of asking students to make an instructional video of a multimedia lesson: Clarifying the learning?by?teaching hypothesis. Journal of Computer Assisted Learning, 39(5), 1636–1651. https://doi.org/10.1111/jcal.12823

Costa, A. D. S., Gomes, J. M., Germani, A. C. C. G., Da Silva, M. R., Santos, E. F. D. S., Soares Júnior, J. M., Baracat, E. C., & Sorpreso, I. C. E. (2020). Knowledge gaps and acquisition about HPV and its vaccine among Brazilian medical students. PLOS ONE, 15(3), e0230058. https://doi.org/10.1371/journal.pone.0230058

Deslauriers, L., Schelew, E., & Wieman, C. (2011). Improved Learning in a Large-Enrollment Physics Class. Science, 332(6031), 862–864. https://doi.org/10.1126/science.1201783

Dwiyani, S., Nanna, A. W. I., & Kusnadi, D. (2021). Analyzing the Gender Strategy in Math: Good, Routine, or Naive Problem Solver? JIPM (Jurnal Ilmiah Pendidikan Matematika), 9(2), Article 2. https://doi.org/10.25273/jipm.v9i2.8412

Erden, A., & Emirzeo?lu, M. (2020). Orthopedics and Traumatology Inpatient Satisfaction Survey. Journal of Patient Experience, 7(6), 1357–1361. https://doi.org/10.1177/2374373520948396

Fadhilah, F., Efendi, Z. M., & Ridwan, R. (2018). DILA Learning Model based on Contextual Teaching and Learning in Applied Physics Course at Mining Engineering. Proceedings of the International Conference on Indonesian Technical Vocational Education and Association (APTEKINDO 2018). International Conference on Indonesian Technical Vocational Education and Association (APTEKINDO 2018), Surabaya, Indonesia. https://doi.org/10.2991/aptekindo-18.2018.76

Fraenkel, J. R., Wallen, N. E., & Hyun, H. H. (2012). How to design and evaluate research in education (8th ed). McGraw-Hill Humanities/Social Sciences/Languages.

Habibi, M., Zainuddin, Z., & Misbah, M. (2017). Pengembangan Perangkat Pembelajaran IPA Fisika Berorientasi Kemampuan Pemecahan Masalah Menggunakan Model Pengajaran Langsung Pada Pokok Bahasan Tekanan Di SMP Negeri 11 Banjarmasin. Berkala Ilmiah Pendidikan Fisika, 5(1), 1. https://doi.org/10.20527/bipf.v5i1.2234

Hake, R. R. (1999). Analyzing Change/Gain Scores*. 4.

Irfannuddin, M., Laeto, A. B., Zulissetiana, E. F., Santoso, B., Kurniati, A. M., & Hestiningsih, T. (2021). Virtual national workshop: Preparation of multimedia modules for physical education teachers in accordance with COVID-19 prevention procedures. Advances in Physiology Education, 45(3), 563–567. https://doi.org/10.1152/advan.00249.2020

Khajeh, A., Baharloo, G., & Soliemani, F. (2014). The relationship between psychological well-being and empathy quotient. Management Science Letters, 4(6), 1211–1214. https://doi.org/10.5267/j.msl.2014.5.005

Kobayashi, K. (2019). Interactivity: A Potential Determinant of Learning by Preparing to Teach and Teaching. Frontiers in Psychology, 9, 2755. https://doi.org/10.3389/fpsyg.2018.02755

Kurt, H. S., & Do?an, Z. (2020). Pre-Service Science Teachers’ Skills to Express The Algorithms Used in Solving Physics Problems with Flowcharts (An Example From Turkey). Jurnal Pendidikan Fisika Indonesia, 16(1), 24–33. https://doi.org/10.15294/jpfi.v16i1.21371

Lestari, E. R., Halidjah, S., Vilda Ghasya, D. A., Kresnadi, H., & Salimi, A. (2022). Validitas Bahan Ajar Berbasis Project Based Learning Tematik Kelas IV Sekolah Dasar. At-Thullab?: Jurnal Pendidikan Guru Madrasah Ibtidaiyah, 6(2), 152. https://doi.org/10.30736/atl.v6i2.1085

Lutfi, M., Zainuddin, Z., & Susilowati, E. (2021). Feasibility of Physics Teaching Materials With Qur’an Using Generative Learning Model on Sound Waves. Berkala Ilmiah Pendidikan Fisika, 9(3), 305. https://doi.org/10.20527/bipf.v9i3.10442

Mirawati, B., & Royani, I. (2019). Pengembangan LKS Biologi SMA Berbasis Praktikum dengan Model Pembelajaran Langsung untuk Meningkatkan Keterampilan Proses Sains Siswa. Jurnal Penelitian Dan Pengkajian Ilmu Pendidikan: E-Saintika, 3(2), 88. https://doi.org/10.36312/e-saintika.v3i2.152

Misbah, M. (2016). Identifikasi Kemampuan Pemecahan Masalah Mahasiswa Pada Materi Dinamika Partikel. Jurnal Inovasi dan Pembelajaran Fisika, 3(2), Article 2. https://doi.org/10.36706/jipf.v3i2.3835

Muhali, M., Yuanita, L., & Ibrahim, M. (2019). The Validity and Effectiveness of the Reflective-Metacognitive Learning Model to Improve Students’ Metacognition Ability in Indonesia. Malaysian Journal of Learning and Instruction, 16(2), 33–74. https://doi.org/10.32890/mjli2019.16.2.2

Murtiyasa, B., & Wulandari, S. (2022). Problem Solving Ability According to Polya on System of Linear Equations in Two Variables Based on Student Learning Styles. Jurnal Didaktik Matematika, 9(2), Article 2. https://doi.org/10.24815/jdm.v9i2.26328

Nieveen, N., & Folmer, E. (2013). Formative Evaluation in Educational Design Research. In T. Plomp & N. Nieveen (Eds.), Educational Design Research (pp. 152–169). SLO.

Niss, M. (2018). What Is Physics Problem-Solving Competency? The Views of Arnold Sommerfeld and Enrico Fermi. Science & Education, 27(3–4), 357–369. https://doi.org/10.1007/s11191-018-9973-z

Nurhalimah, A., Mandailina, V., Mahsup, & Syaharuddin. (2022). Measuring the Difficulty Level of Mathematical Problems Based on Polya Criteria. Journal of Education Research and Evaluation, 6(4), Article 4. https://doi.org/10.23887/jere.v6i4.46316

Orrahmah, A., An’nur, S., & M., A. S. (2016). Meningkatkan Hasil Belajar Melalui Model Pengajaran Langsung Dengan Metode Problem Solving Pada Pembelajaran Fisika Di Kelas XII IPA 1 SMAN 10 Banjarmasin. Berkala Ilmiah Pendidikan Fisika, 4(2), 127. https://doi.org/10.20527/bipf.v4i2.1271

Polya, G. (1957). HowTo Solve It. Princeton University Press.

Pramika, D., Gunawan, H., & Yulaini, E. (2023). Android-Based Accounting Learning Media for Independent Learning for Vocational High School Students. IJEBD (International Journal of Entrepreneurship and Business Development), 6(1), 84–92. https://doi.org/10.29138/ijebd.v6i1.2088

Rahayu, G. D. S., Altaftazani, D. H., & Wardani, D. S. (2023). The Development of Teaching Materials Based on Project-Oriented TPACK Approach to Improve the Creative Thinking Skills of Elementary School Teacher Prospective Students. ELEMENTARY: Islamic Teacher Journal, 10(2), 225. https://doi.org/10.21043/elementary.v10i2.14052

Ratumanan, T. G., & Laurens, T. (2011). Penilaian Hasil Belajar pada Tingkat Satuan Pendidikan. Unesa University Press.

Ridho, M. H., Wati, M., Misbah, M., & Mahtari, S. (2020). Validitas Bahan Ajar Gerak Melingkar Berbasis Aunthentic Learning Di Lingkungan Lahan Basah Untuk Melatih Keterampilan Pemecahan Masalah. Journal of Teaching and Learning Physics, 5(2), 87–98. https://doi.org/10.15575/jotalp.v5i2.8453

Rihatno, T., Amanda, F., Marini, A., Sagita, J., Safitri, D., & Maksum, A. (2023). Development of interactive websites to increase learning interest in physical education learning. Cypriot Journal of Educational Sciences, 18(1), 89–104. https://doi.org/10.18844/cjes.v18i1.8262

Rofiah, L., & Maslahah, W. (2021). Developing an e-book based introduction to economics learning materials using aldiko classic application for social sciences students. International Journal of Social Science, 1(4), 355–360. https://doi.org/10.53625/ijss.v1i4.714

Simbar, M., Aarabi, Z., Keshavarz, Z., Ramezani-Tehrani, F., & Baghestani, A. R. (2017). Promotion of physical activity of adolescents by skill-based health education. Health Education, 117(2), 207–214. https://doi.org/10.1108/HE-09-2016-0037

Sujarwanto, E., Hidayat, A., & Wartono, W. (2014). Kemampuan Pemecahan Masalah Fisika Pada Modeling Intructation Pada Siswa SMA Kelas XI. Jurnal Pendidikan IPA Indonesia, 3(1), Article 1. https://doi.org/10.15294/jpii.v3i1.2903

Sukmawan, S., Setyowati, L., & El-Sulukiyyah, A. A. (2021). The Effect of Authentic Materials on Writing Performance across Different Levels of Proficiency. International Journal of Language Education, 515–527. https://doi.org/10.26858/ijole.v5i1.15286

Tavakol, M., & Dennick, R. (2011). Making sense of Cronbach’s alpha. International Journal of Medical Education, 2, 53–55. https://doi.org/10.5116/ijme.4dfb.8dfd

Trafimow, D., Hyman, M. R., & Kostyk, A. (2023). Enhancing predictive power by unamalgamating multi-item scales. Psychological Methods. https://doi.org/10.1037/met0000599

Turuntaeva, I. V., Makogina, E. I., & Belov, A. N. (2022). A Culturological Approach To The Formation Of Educational Material In Physical Education. 1013–1023. https://doi.org/10.15405/epsbs.2022.06.112

Wati, M., Hartini, S., Misbah, M., & Resy, R. (2017). Pengembangan Model Fisika Berintegrasi Kearifan Lokal Hulu Sungai Selatan. Jurnal Inovasi dan Pembelajaran Fisika, 4(2), Article 2. https://doi.org/10.36706/jipf.v4i2.5411

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Published

2022-07-30

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How to Cite

Purba, C., Arifuddin, M., & Mahtari, S. (2022). Pengembangan Materi Ajar Impuls dan Momentum Menggunakan Model Pengajaran Langsung Untuk Melatih Keterampilan Pemecahan Masalah. Journal of Authentic Research, 1(2), 84-97. https://doi.org/10.36312/jar.v3i1.1035