PENGEMBANGAN MEDIA PEMBELAJARAN BERBASIS PROJECT BASED LEARNING PADA MATERI TITRASI KOMPLEKSOMETRI

Rafidah Almira Samosir, Mutia Ardila

Abstract


Research on developing project-based learning materials for complexometric titration materials is still rare, despite the fact that these materials have shown promising in chemical education. The objective of this project is to create a complexometric titration learning resource based on Project-Based Learning (PjBL) and assess its viability and efficacy in improving students' psychomotor abilities and learning outcomes. Using the ADDIE paradigm, the study used a Research and Development (R&D) methodology. The media, which includes instructive videos, digital resources, and a useful mini-project, was created with Adobe Flash CS6. 42 chemical education students from Universitas Negeri Medan (UNIMED) participated in a restricted trial after validation by two subject matter experts and two media experts. Subject matter experts and media experts gave the validation results an average score of 3.29 and 3.46, respectively, which both fell into the "highly feasible" category. During the implementation phase, the experimental class outperformed the control group in terms of learning outcomes (gain score of 0.722) and psychomotor skills (average score of 3.64). With an average score of 3.46, students' reactions to the media were likewise very favorable. These results demonstrate that the developed media is useful for enhancing students' engagement in learning complexometric titration, conceptual knowledge, and laboratory skills.

Keywords


Project-based Learning; Learning Media; Complexometric Titration; Psychomotor Skills; Learning Outcomes

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References


Afrina, M., Siska, J., & Danim, S. (2023). Developing Android-Based Chemistry Learning Media Using the Inquiry Model to Improve Students’ Learning Outcomes and Critical Thinking Ability. Tadbir : Jurnal Studi Manajemen Pendidikan, 7(2), 409. https://doi.org/10.29240/jsmp.v7i2.8162

Akinbo, O. T. (2014). Bottled Water Analysis: A Tool For Service-Learning and Project-Based Learning. In Service Learning and Environmental Chemistry: Relevant Connections (Vol. 1177, pp. 149–191). American Chemical Society. https://doi.org/doi:10.1021/bk-2014-1177.ch010

Amalia, H., & Effendi Thahar, H. (2024). Implementation of Multimedia Project-Based Learning Model and Language Attitude towards Writing Skills. JPI (Jurnal Pendidikan Indonesia), 13(1), 52–62. https://doi.org/10.23887/jpiundiksha.v13i1.69767

Amalia, H., & Thahar, H. E. (2024). Implementation of Multimedia Project-Based Learning Model and Language Attitude towards Writing Skills. JPI (Jurnal Pendidikan Indonesia), 13(1), 52–62. https://doi.org/10.23887/jpiundiksha.v13i1.69767

Anggraini, P. D., & Wulandari, S. S. (2021). Analisis Penggunaan Model Pembelajaran Project Based Learning Dalam Peningkatan Keaktifan Siswa. Jurnal Pendidikan Administrasi Perkantoran (JPAP), 9(2). https://journal.unesa.ac.id/index.php/jpap

Anggreani, C. N., Yamtinah, S., Susilowati, E., Shidiq, A. S., & Widarti, H. R. (2023). Instagram-based Learning Media and Chemistry Practicum Video Projects to Improve Students’ Creative Thinking Skills. JPI (Jurnal Pendidikan Indonesia), 12(2), 234–244. https://doi.org/10.23887/jpiundiksha.v12i2.58310

Ariefiani, Z., Kustono, D., & Pathmantara, S. (2016). Module Development With Project-Based Learning Approach and Assure Development Model. Proceedings of the International Mechanical Engineering and Engineering Education Conferences (IMEEEC 2016), 030036. https://doi.org/10.1063/1.4965770

Bae, J. H., & Lee, H. (2015). Development of teaching-learning model with project-based learning using smart learning contents authoring tool. Lecture Notes in Electrical Engineering, 330, 1031–1036. https://doi.org/10.1007/978-3-662-45402-2_146

Boachie, S., Ameyaw Baah, K., & Quansah, F. (2021). Investigating Into Students’ Challenges During Teaching And Learning Of Acid-Base Titration Practical: A Study At Berekum Presbyterian Senior High School In The Bono Region Of Ghana. International Journal of Scientific and Research Publications (IJSRP), 11(5), 571–576. https://doi.org/10.29322/ijsrp.11.05.2021.p11359

Branch, R. M. (2009). Instructional Design: The ADDIE Approach. Spinger.

Buchberger, A. R., Evans, T., & Doolittle, P. (2020). Analytical Chemistry Online? Lessons Learned from Transitioning a Project Lab Online Due to COVID-19. Journal of Chemical Education, 97(9), 2976–2980. https://doi.org/10.1021/acs.jchemed.0c00799

Cao, J., Guan, H., & Jiang, J. (2025). A Review of the Literature on Project-Based Learning in High School Chemistry over the Past Decade in the Journal of Chemical Education. Journal of Chemical Education, 102(2), 599–614. https://doi.org/10.1021/acs.jchemed.4c00886

Chairani, Y., Sudrajat, A., & Yusuf, M. (2019). Interactive Multimedia-Based Learning Materials Innovation for Teaching Basic Techniques in Analysis. Proceedings of The 4th Annual International Seminar on Transformative Education and Educational Leadership (AISTEEL), 2548–4613.

Dheadema, S. A., Muhairini, R., Rasmawan, R., Enawaty, E., & Lestari, I. (2023). Video Animasi Sebagai Media Pembelajaran pada Materi Hidrokarbon. Jurnal Inovasi Pendidikan Kimia, 17(2). http://journal.unnes.ac.id/nju/index.php/JIPK

Doble, J., Grabau, E., Henry, K., Rosenberg, R., Tomasko, C., Karshbaum, M., Gute, B., & Wainman, J. W. (2025). Visualizing Le Châtelier’s Principle through Lead-EDTA Complexometric Titrations. Journal of Chemical Education, 102(1), 304–310. https://doi.org/10.1021/acs.jchemed.4c00469

Fajarwati, S., Susilo, H., & Indriwati, S. E. (2017). Pengaruh Project Based Learning Berbantuan Multimedia Terhadap Keterampilan Memecahkan Masalah Dan Hasil Belajar Psikomotor Siswa Kelas XI SMA. Jurnal Pendidikan: Teori, Penelitian, Dan Pengembangan, 2(3), 315–321. http://journal.um.ac.id/index.php/jptpp/

Fuldiaratman, F., & Ekaputra, F. (2023). Analysis of Students’ 4C Skills Based on Project Based Learning through Chemo Entrepreneurship Media. EduLine: Journal of Education and Learning Innovation, 3(3), 454–459. https://doi.org/10.35877/454ri.eduline2057

Gunawan, G., Sahidu, H., Harjono, A., & Made Yeni Suranti, N. (2017). The Effect of Project Based Learning With Virtual Media Assistance on Student’s Creativity in Physics. Cakrawala Pendidikan, 36(2), 167–179.

Hartati, S., & Siregar, S. A. (2024). Pemanfaatan Video Pembelajaran Dalam Pembelajaran Kimia Untuk Meningkatkan Pemahaman Konsep Kimia. Journal of Chemistry Education and Integration, 3(2), 111. https://doi.org/10.24014/jcei.v3i2.32351

Hasyim, M., & Ahmad, S. (2021). The Effectiveness of Implementing Blended Project Based Learning using ICT-Multimedia in Statistic Learning. Proceedings of the 2nd Annual Conference on Social Science and Humanities (ANCOSH 2020), 346–349. https://vlearn.ubhi.ac.id/

Hawu, A. T., Nggaba, M. E., & Randjawali, E. (2023). Development of Android-Based Mathematics Learning Media on Three Dimensional Subject Materials. Mathline : Jurnal Matematika Dan Pendidikan Matematika, 8(2), 313–328. https://doi.org/10.31943/mathline.v8i2.349

Husna, A., & Cahyono, E. (2018). The Effect of Project Based Learning Model Aided Scratch Media Toward Learning Outcomes and Creativity Article Info. Journal of Innovative Science Education, 8(1), 1–7. http://journal.unnes.ac.id/sju/index.php/jise

Kassa, M. M., Azene, M. K., Mengstie, S. M., & Ferede, M. W. (2024). Effect of using multimedia and dynamic classroom integrated instruction on grade 11 students’ biology academic achievement. Heliyon, 10(18), e37315. https://doi.org/https://doi.org/10.1016/j.heliyon.2024.e37315

Khan, Z. H., & Abid, M. I. (2017). Role of Laboratory Setup in Project-Based Learning of Freshmen Electrical Engineering in Pakistan. International Journal of Electrical Engineering and Education, 54(2), 150–163. https://doi.org/10.1177/0020720916689103

Khoiorni, R., Priatmoko, S., & Prasetya, A. T. (2023). The Effectiveness of Android-Based Media in Chemistry Learning to Improve Chemistry Literacy and Learning Motivation. International Journal of Active Learning, 8(1), 10–20. http://journal.unnes.ac.id/nju/index.php/ijal

Kholid, I., Harizon, H., & Hasibuan, M. H. E. (2024). The Development of a Project-Based Multimedia and Its Effectiveness in Improving Students’ Higher Order Thinking Skills About Chemistry Bonding concept. Jurnal Pendidikan Kimia, 16(3), 230–237. https://doi.org/10.24114/jpkim.v16i3.61477

Kholis, A., Setiana, E., & Sibarani, C. G. G. T. (2022). Developing the Project based Learning using Mobile Media Application among Vocational High School Students in Sumatera Utara Province, Indonesia. International Journal of Advances in Social Sciences and Humanities, 1(1), 26–33. https://doi.org/10.56225/ijassh.v1i1.36

Kurniasih, D., & Kurniati, T. (2015). Media Pembelajaran Flash Untuk Meningkatkan Kemampuan Kognitif Mahasiswa Pada Praktikum Kimia Analitik I. Prosiding Semirata 2015 Bidang Teknologi Informasi Dan Multi Disiplin, 152–160.

Lathifah, A. S., Hardaningtyas, K., Pratama, Z. A., & Moewardi, I. (2024). Penerapan Teori Belajar Konstruktivisme dalam Meningkatkan Keaktifan dan Hasil Belajar Siswa. DIAJAR: Jurnal Pendidikan Dan Pembelajaran, 3(1), 36–42. https://doi.org/10.54259/diajar.v3i1.2233

Leow, F.-T. (2014). Interactive Multimedia Learning: Innovating Classroom Education in a Malaysia University. TOJET: The Turkish Online Journal of Educational Technology, 13(2), 99–110.

Lestari, N. A., Liliasari, Irawan, N. Z. P., & Musthapa, I. (2024). Research Trends of Project-Based Learning Model in Chemistry Learning Through Bibliometric Analysis. Indonesian Journal of Educational Research and Review, 7(2), 404–415. https://doi.org/10.23887/ijerr.v7i2.79200

Liu, L., Ling, Y., Gao, Q., & Fu, Q. (2022). Supporting students’ inquiry in accurate precipitation titration conditions with a virtual laboratory tool as learning scaffold. Education for Chemical Engineers, 38, 78–85. https://doi.org/https://doi.org/10.1016/j.ece.2021.11.001

Liu, L., Ling, Y., Yu, J., & Fu, Q. (2021). Developing and Evaluating an Inquiry-Based Online Course With a Simulation Program of Complexometric Titration. Journal of Chemical Education, 98(5), 1636–1644. https://doi.org/10.1021/acs.jchemed.0c01229

Maiasputri, N., Lufri, A. Y., & Sumarmin, R. (2018). The Validity of the Development of Project-Based Oriented The Validity of the Development of Project-Based Oriented For High School. International Journal of Progressive Sciences and Technologies (IJPSAT), 6(2), 433–438.

Manurung, H. M., & Simaremare, J. A. (2022). Development of Interactive Organic Chemistry E-Module Using Macromedia Flash Improves Concept Mastery. International Journal of Multidisciplinary: Applied Business and Education Research, 3(10), 2132–2141. https://doi.org/10.11594/ijmaber.03.10.25

Martalina, D. S., Situmorang, M., & Sudrajat, A. (2018). The Development of Innovative Learning Material with Integration of Project and Multimedia for the Teaching of Gravimetry. Proceedings of the 3rd Annual International Seminar on Transformative Education and Educational Leadership (AISTEEL 2018), 735–740. https://doi.org/10.2991/aisteel-18.2018.160

Masgumelar, N. K., & Mustafa, P. S. (2021). Teori Belajar Konstruktivisme dan Implikasinya dalam Pendidikan dan Pembelajaran. GHAITSA : Islamic Education Journal, 1. https://siducat.org/index.php/ghaitsa

Maulana, M. (2020). Penerapan model Project Based Learning berbasis STEM pada Pembelajaran Fisika Siapkan Kemandirian Belajar Peserta Didik. Jurnal TENDIK, 24(1), 37–48. www.ubaya.ac.id/2014/content/articles_detail/

McLaughlin, S., Amir, H., Garrido, N., Turnbull, C., Rouncefield-Swales, A., Swadźba-Kwaśny, M., & Morgan, K. (2024). Evaluating the Impact of Project-Based Learning in Supporting Students with the A-Level Chemistry Curriculum in Northern Ireland. Journal of Chemical Education, 101(2), 537–546. https://doi.org/10.1021/acs.jchemed.3c01184

Moumoutzis, N., Christoulakis, M., Pitsiladis, A., Maragoudakis, I., Christodoulakis, S., Menioudakis, M., Koutsabesi, J., & Tzoganidis, M. (2017). Using New Media Arts to Enable Project-Based Learning in Technological Education. 2017 IEEE Global Engineering Education Conference (EDUCON), 287–296. https://doi.org/10.1109/EDUCON.2017.7942861

Mulyani, S., Nurdina, R. A., & Mahardiani, L. (2023). Improving Students Learning Outcomes and Digital Literacy on Acid-Base Titration Using Titration Screen Experiment Media. International Journal of Pedagogy and Teacher Education, 7(1), 22–37. https://doi.org/10.20961/ijpte.v0i0.72051

Pursitasari, I. D., & Permanasari, A. (2012). Analisis Pemahaman Konsep Dan Kesulitan Mahasiswa Untuk Pengembangan Program Perkuliahan Dasar-Dasar Kimia Analitik Berbasis Problem Solving. Jurnal Pendidikan IPA Indonesia, 1(1), 98–101.

Rahmawati, Y. (2023). Efektifitas Penggunaan E-Modul Berbasis Project Based Learning Terhadap Kompetensi Peserta Didik Pada Kurikulum Merdeka Belajar. 4(1), 293–300. http://jurnaledukasia.org

Rifai, A. S., Utomo, S. B., Nurma, D., & Indriyanti, Y. (2021). Penerapan Model Project Based Learning Untuk Meningkatkan Kreativitas Dan Prestasi Belajar Siswa Pada Materi Pokok Termokimia Kelas XI IIS SMA Negeri 5 Surakarta. Jurnal Pendidikan Kimia, 10(2), 123–129. https://doi.org/10.20961/jpkim.v10i2.41379

Rizki, R., Hernando, H., Situmorang, M., & Tarigan, S. (2020). The Development of Innovative Learning Material with Project and Multimedia for Redox Titration. Proceedings of the 7th Mathematics, Science, and Computer Science Education International Seminar, MSCEIS 2019. https://doi.org/10.4108/eai.12-10-2019.2296376

Rohimat, S. (2022). Pemanfaatan Macromedia Flash Sebagai Media Pembelajaran Kimia Secara Daring. Jurnal Pendidikan Sultan Agung, 2(2), 160–171.

Sakti, I., Nirwana, N., & Swistoro, E. (2021). Penerapan Model Project Based Learning Untuk Meningkatkan Literasi Sains Mahasiswa Pensisikan IPA. Jurnal Kumparan Fisika, 4(1), 35–42. https://doi.org/10.33369/jkf.4.1.35-42

Salame, I. I., Montero, A., & Eschweiler, D. (2022). Examining some of the Students’ Challenges and Alternative Conceptions in Learning about Acid-base Titrations. IJCER (International Journal of Chemistry Education Research), 1–10. https://doi.org/10.20885/ijcer.vol6.iss1.art1

Samosir, R. A., Ardila, M., Pratiwi, A. J., Kurniawan, E. D. A., & Ridho, D. (2025). Integrating Virtual Laboratories in Chemistry Education: Vocational Students’ Responses to Cation Qualitative Analysis. HYDROGEN Jurnal Kependidikan Kimia, 13(2), 370381. https://doi.org/10.33394/hjkk.v13i2.15432

Silaban, M. S., Nisa, S. A., Silaban, S., & Sianturi, J. (2022). The Development of Sets-Based Chemic Media on Hydrocarbon Material. Jurnal Pendidikan Kimia, 14(2), 85–96. https://doi.org/10.24114/jpkim.v14i2.32911

Siregar, A. D., & Harahap, L. K. (2020). Pengembangan E-Modul Berbasis Project Based Learning Terintegrasi Media Komputasi Hyperchem Pada Materi Bentuk Molekul. Jurnal Penelitian Pendidikan Sains), 10(01), 1925–1931. https://journal.unesa.ac.id/index.php/jpps

Situmorang, H. N., Purba, S., & Situmorang, M. (2021). The Development of Innovative Learning Resources with Multimedia to Support Online Learning in Teaching Industrial Management. Proceedings of the 6th Annual International Seminar on Transformative Education and Educational Leadership (AISTEEL 2021), 918–925. https://doi.org/10.2991/assehr.k.211110.205

Situmorang, M., Sitorus, M., Hutabarat, W., & Situmorang, Z. (2015). The Development of Innovative Chemistry Learning Material for Bilingual Senior High School Students in Indonesia. International Education Studies, 8(10), 72–85. https://doi.org/10.5539/ies.v8n10p72

Solikhin, F., & Wijanarko, A. (2021a). The Development of Android-Based Learning Media (Chemdroid) on The Topic Thermochemistry to Improve The Students’ Achievement. JKPK (Jurnal Kimia Dan Pendidikan Kimia), 6(2), 138. https://doi.org/10.20961/jkpk.v6i2.46849

Solikhin, F., & Wijanarko, A. (2021b). The Development of Android-Based Learning Media (Chemdroid) on The Topic Thermochemistry to Improve The Students’ Achievement. JKPK (Jurnal Kimia Dan Pendidikan Kimia), 6(2), 138. https://doi.org/10.20961/jkpk.v6i2.46849

Sugiyono. (2010). Metode Penelitian Kuantitatif Kualitatif dan R&D. Alfabeta.

Sumarni, W., Wardani, S., Sudarmin, S., & Gupitasari, D. N. (2016). Project based learning (PBL) to improve psychomotoric skills: A classroom action research. Jurnal Pendidikan IPA Indonesia, 5(2), 157–163. https://doi.org/10.15294/jpii.v5i2.4402

Surbakti, S. S., Sitompul, H., & Saragih, A. H. (2023). Project-Based Learning Audio-Visual Learning Media: Improving Chemistry Learning Outcomes. International Journal of Computer Applications Technology and Research, 12(8), 47–54. https://doi.org/10.7753/ijcatr1208.1007

Tukiyo, T., Triyono, T., Haryono, P., Tasari, T., & Suwartini, S. (2024). Teaching Materials Using the Project Based Learning Model on Learning Outcomes of Elementary School Students. Journal for Lesson and Learning Studies, 7(2), 316–324. https://doi.org/10.23887/jlls.v7i2.83497

Widodo, G., & Joko. (2015). Pengembangan Dan Implementasi Perangkat Pembelajaran Berbasism Proyek. INVOTEC, XI(1), 41–56.

Widyasari, F., Indriyanti, N. Y., & Mulyani, S. (2018). The Effect of Chemistry Learning with PjBL and PBL Model Based on Tetrahedral Chemistry Representation in term of Student’s Creativity. JKPK (Jurnal Kimia Dan Pendidikan Kimia), 3(2), 93. https://doi.org/10.20961/jkpk.v3i2.16638

Yamtinah, S., Elfi Susanti, V. H., Saputro, S., Ariani, S. R. D., Shidiq, A. S., Sari, D. R., & Ilyasa, D. G. (2023). Augmented reality learning media based on tetrahedral chemical representation: How effective in learning process? Eurasia Journal of Mathematics, Science and Technology Education, 19(8). https://doi.org/10.29333/ejmste/13436

Yustiqvar, M., Gunawan, G., Hadisaputra, S., & Bon, A. T. (2019). Interactive Multimedia Product Based on Green Chemistry in the Acid-Base Concept of Chemistry Learning Process. Proceedings of the International Conference on Industrial Engineering and Operations Management, 2082–2086.

Zancul, E. de S., Sousa-Zomer, T. T., & Cauchick-Miguel, P. A. (2017). Project-based learning approach: improvements of an undergraduate course in new product development. Production, 27(spe), 1–14. https://doi.org/10.1590/0103-6513.225216

Zurweni, W. B., & Erwin, T. N. (2017). Development of Collaborative-Creative Learning Model using Virtual Laboratory Media for Instrumental Analytical Chemistry Lectures. AIP Conference Proceedings, 1–18.




DOI: http://dx.doi.org/10.22373/lj.v13i1.29923

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