Student-centered pedagogies for 21st-century STEM
A comparative review and implementation guide
DOI:
https://doi.org/10.32674/qnh67005Keywords:
constructivism, problem- based learning, project based learningAbstract
This review synthesizes learner-centered pedagogies for STEM education and evaluates their feasibility under common classroom constraints. Using a structured search of scholarly databases, we analyzed 61 sources on constructivist, inquiry-based, problem-based, and project-based learning; design thinking; brainstorming; cooperative learning; Six Thinking Hats; the flipped classroom; and interactive teaching. Comparative findings indicate no single “best” approach. Effective selection depends on instructional aims, student characteristics, and local conditions, especially advanced preparation time, in-class time demands, and availability of digital and material resources. Evidence highlights persistent barriers—limited time, teacher training needs, and infrastructure gaps—yet also documents gains, particularly for flipped models in mathematics. We conclude with a practical decision frame and recommendations for curriculum design, professional development, in-service support, and classroom assessment guidance.
References
Afzal, A. (2020). Collaboration in Secondary School Classroom. Pakistan Review of Social Sciences, 1(1), 79-92.
Aidoo, B. (2023). Teacher Educators Experience Adopting Problem-Based Learning in Science Education. Educ. Sci., 13(1113). doi:https://doi.org/10.3390/educsci13111113
Almazroui, K. (2023). Project-Based Learning for 21st-Century Skills: An Overview and Case Study of Moral Education in the UAE. The Social Studies, 114(3), 125-136. doi:https://doi.org/10.1080/00377996.2022.2134281
Alsaleh, N. J. (2020). Teaching Critical Thinking Skills: Literature Review. The Turkish Online Journal of Educational Technology, 19(1). Retrieved from https://eric.ed.gov/?id=EJ1239945
Alt, D., & Raichel, N. (2022). Problem-based learning, self- and peer assessment in higher education: towards advancing lifelong learning skills. Research Papers in Education, 1-25. doi:https://doi.org/10.1080/02671522.2020.1849371
Altangerel , B., Tsolmon, R., & Khulan , O. (2022). An Experiment in Applying Differentiated Instruction in STEAM Disciplines. Eurasian Journal of Educational Research, pp. 21-37. doi:10.14689/ejer.2022.98.02
Ampartzaki, M., Kalogiannakis, M., Papadakis, S., & Giannakou, V. (2022). Perceptions About STEM and the Arts: Teachers’, Parents’ Professionals’ and Artists’ Understandings About the Role of Arts in STEM Education. In: Papadakis, S., Kalogiannakis, M. (eds) STEM, Robotics, Mobile Apps in Early Childhood and Primary Education. Springer, Singapore. doi:https://doi.org/10.1007/978-981-19-0568-1_25
Asghar, A., Ellington, R., Rice, E., Johnson, F., & Prime, G. M. (2012). Supporting STEM Education in Secondary Science Contexts. Interdisciplinary Journal of Problem-Based Learning, 6(2). doi:https://doi.org/10.7771/1541-5015.1349
Baltsavias, Α., & Kyridis, A. (2020). Preschool Teachers’ Perspectives on the Importance of STEM Education in Greek Preschool Education. Journal of Education and Practice, 11(14). Retrieved from https://pdfs.semanticscholar.org/f008/96106a3657ee59ead2198c1fa399b2ea0f58.pdf
Bell, D., Morrison-Love, D., Wooff, D., & et al. (2018). STEM education in the twenty-first century: learning at work—an exploration of design and technology teacher perceptions and practices. Int J Technol Des Educ, 28, 721-737. doi:https://doi.org/10.1007/s10798-017-9414-3
Brown, J. K. (2008). Student- Centered Instruction: Involving Students in Their Own Education. Music educator Journal, 30-35. Retrieved from https://journals.sagepub.com/doi/pdf/10.1177/00274321080940050108?casa_token=aOCHpgYxzj0AAAAA:0oEM8wPrK3Zdbzk-ynRbOPpLnczQV86vx6BZRR0MRhpk9l3-mCH7G4sNKj0l8QHoPYSTRmucvs6C
Bryce, J., & Withers, G. (2003). Engaging secondary school students in lifelong learning. AUSTRALIA: Australian Council for Educational Research Ltd. Retrieved from https://apo.org.au/node/905
Dahlia, D., Iskandar, I., & Muhayyang, M. (2024). Students’ Descriptive Writing Ability Improvement through Six Thinking Hats Strategy. ARRUS Journal of Social Sciences and Humanities, 4(3), 291-299. doi:https://doi.org/10.35877/soshum2510
DeBono, E. (2006). Τα έξι καπέλα της σκέψης. (Γ. Μπαρουξής, Trans.) Αλκυών. doi:9789603261278
Dekker, H., & Walsarie Wolff, S. (2016). Re-inventing Research-Based Teaching and Learning. European Forum for Enhanced Collaboration in Teaching. Brussels .
Doğan, Y., & Batdı, V. (2021). Revisiting Brainstorming Within an Educational Context: A Meta-Thematic Analysis. Journal of Learning for Development, 8(3), 542-556. Retrieved from https://www.sadil.ws/bitstream/handle/123456789/1376/Revisiting%20brainstorming%20within.pdf?sequence=1&isAllowed=y
Egara, F., & Mosimege, M. (2024). Effect of blended learning approach on secondary school learners’ mathematics achievement and retention. Educ Inf Technol. doi:https://doi.org/10.1007/s10639-024-12651-w
Egara, F., & Mosimege, M. (2024). Effect of flipped classroom learning approach on mathematics achievement and interest among secondary school students. Educ Inf Technol, 29, 8131-8150. doi:https://doi.org/10.1007/s10639-023-12145-1
Eikeland, I., & Ohna, S. (2022). Differentiation in education: a configurative review. Nordic Journal of Studies in Educational Policy, 8(3), 157-170. doi:https://doi.org/10.1080/20020317.2022.2039351
El-Deghaidy, Η., & Mansour , Ν. (2015). Science Teachers’ Perceptions of STEM Education: Possibilities and Challenges. International Journal of Learning and Teaching, 1(1). Retrieved from https://d1wqtxts1xzle7.cloudfront.net/38996897/Science_Teachers_Perceptions_of_STEM-libre.pdf?1443957894=&response-content-disposition=inline%3B+filename%3DScience_Teachers_Perceptions_of_STEM_Edu.pdf&Expires=1689804434&Signature=bhl9eSihCZ~Edq~Bq7oaW6yfa
Ellerton, P., & Kelly, R. (2021). Creativity and Critical Thinking. Education in 21st Century, 7-27. doi:https://doi.org/10.1007/978-3-030-85300-6_2
Gürsoy, E., & Özcan, E. (2022). Using six thinking hats to raise intercultural awareness: A pre-experimental study. Porta Linguarum Revista Interuniversitaria de Didáctica de las Lenguas Extranjeras, 259-274. doi:10.30827/portalin.vi37.20771
Gafour, O. W., & Gafour, W. A. (2020). Creative Thinking skills- A Review article. Jourmal of Education and e-Learning. Retrieved from https://www.researchgate.net/profile/Walid-Gafour/publication/349003763_Creative_Thinking_skills_-A_Review_article/links/601aa8bf299bf1cc269e39b1/Creative-Thinking-skills-A-Review-article.pdf
Galindo-Dominguez, H. (2021). Flipped Classroom in the Educational System: Trend or Effective Pedagogical Model Compared to Other Methodologies? Educational Technology & Society, 24(3), 44-60. Retrieved from https://www.jstor.org/stable/27032855
Ghavifekr, S. (2020). COLLABORATIVE LEARNING: A KEY TO ENHANCE STUDENTS’ SOCIAL INTERACTION SKILLS. MALAYSIAN ONLINE JOURNAL OF EDUCATIONAL SCIENCES, 8(4), 9-21. Retrieved from https://ojie.um.edu.my/index.php/MOJES/article/view/26394/12190
Gong, Z., Lee, L., Soomro, S., Nanjappan, V., & Georgiev, G. (2022). A systematic review of virtual brainstorming from the perspective of creativity: affordances, framework, and outlook, Digital Creativity,. Taylor and Francis Online, 33(2), 96-127. doi:https://doi.org/10.1080/14626268.2022.2064879
Goodwin, J. (2024). What’s the Difference? A Comparison of Student-Centered Teaching Methods. Educ. Sci., 14(736). doi:https://doi.org/10.3390/educsci14070736
Gündüz, A. (2023). The importance of investigating students’ lifelong learning levels and perceptions of 21stcentury skills. International e-Journal of Educational Studies, 7(15), 788-796. doi:https://doi.org/10.31458/iejes.1346220
Hackman, S., Zhang, D., & He, J. (2021). Secondary school science teachers’ attitudes towards STEM education in Liberia. INTERNATIONAL JOURNAL OF SCIENCE EDUCATION, 43(2), 223-246. doi:https://doi.org/10.1080/09500693.2020.1864837
Hafni, R. N., Herman, T., Nurlaelah, E., & Mustikasari, L. (2020). The importance of science, technology, engineering, and mathematics (STEM) education to enhance students' critical thinking skill in facing the industry 4.0. J. Phys.: Conf. Ser.(1521). doi:10.1088/1742-6596/1521/4/042040
Heystek, S. (2021). The implementation of problem-based learning to foster pre-service teachers' critical thinking in education for sustainable development. North-West University. Retrieved from https://repository.nwu.ac.za/bitstream/handle/10394/37545/Heystek_SE.pdf?sequence=1&isAllowed=y
Huang, S.-Y., Ko, P.-J., Lin, H.-H., Dai, R.-H., & Chen, H.-C. (2021). Creative Thinking Counseling Teaching Program can Improve the Creativity, Creative Tendency, and Self-Concept of Grade 7 Students: A Quasi-Experimental Study. Journal of Creative Bahavor, 55(3), 819-838. doi:https://doi.org/10.1002/jocb.491
Jones, L. (2007). The Student- Centered Classroom. Cambridge University Press. Retrieved from https://mail.brettwilkin.com/phocadownload/StudentCentredClassroom/jones-student-centered.pdf
Kaplan, D. (2019). Creativity in Education: Teaching for Creativity Development. Psychology, 10(2), 140-147. doi:https://doi.org/10.4236/psych.2019.102012
Katsaounos, G., Zachos, G., & Siolou , M. (2014). Problem-based learning : A case study in EPALs using MOODLE. In Proceedings of the Proceedings of the 8th Panhellenic Conference of Computer Science Teachers. Volos. Retrieved from http://synedrio.pekap.gr/praktika/8o/ergasies/11katsaounos3-full.pdf
Keiler, L. (2018). Teachers’ roles and identities in student-centered classrooms. IJ STEM Ed, 5(34). doi:https://doi.org/10.1186/s40594-018-0131-6
Kilipiris, F., Avdimiotis, S., Christou, E., Tragouda, A., & Konstantinidis, I. (2024). Bloom’s Taxonomy Student Persona Responses to Blended Learning Methods Employing the Metaverse and Flipped Classroom Tools. Educ. Sci., 14(418). doi:https://doi.org/10.3390/educsci14040418
Koh, J., Chai, C., Wong, B., & Hong, H. (2015). Design Thinking and Education. In Design Thinking for Education: Conceptions and Applications in Teaching and Learning (pp. 1-15). Singapore: Springer Singapore. doi: https://doi.org/10.1007/978-981-287-444-3_1
Kuhr, B. (2023). Dr. Carol Ann Tomlinson: A Legacy of Differentiated Instruction and Empathetic Classrooms. In Geier, B.A. (eds) The Palgrave Handbook of Educational Thinkers . (pp. 1-14). Cham: Geier, Brett A. doi:10.1007/978-3-030-81037-5_193-1
Lasky, D., & Yoon, S. (2020). A creative classroom for everyone: An introduction to a small ‘c’ creativity framework. Thinking Skills and Creativity, 36. doi:https://doi.org/10.1016/j.tsc.2020.100660.
Li, Y., Schoenfeld, A., diSessa, A., & et al. (2019). Design and Design Thinking in STEM Education. Journal for STEM Educ(2), 93-104. doi:https://doi.org/10.1007/s41979-019-00020-z
Liebech-Lie, B., & Sjølie, E. (2020). Teachers’ conceptions and uses of student collaboration in the classroom. Educational Research. doi:https://doi.org/10.1080/00131881.2020.1839354
Lindner, K., & Schwab, S. (2020). Differentiation and individualisation in inclusive education: a systematic review and narrative synthesis. International Journal of Inclusive Education, 1-21. doi:https://doi.org/10.1080/13603116.2020.1813450
Mansurova, E. (2024). Improving critical thinking skills through the six thinking hats technique among B2-level students. opical Issues of Language Training in the Globalized World, 1(1). Retrieved from https://inlibrary.uz/index.php/issues-language-training/article/view/33146
Meirbekov, A., Maslova, I., & Gallyamova, Z. (2022). Digital education tools for critical thinking development. Thinking Skills and Creativity, 44. doi:https://doi.org/10.1016/j.tsc.2022.101023.
Nielsen, K. (2023). Why Can the Flipped Classroom Frustrate Students? Experiences from an Engineering Mathematics Course. Educ. Sci, 13(396). doi:https://doi.org/10.3390/educsci13040396
Norris, C., Taylor, T., & Lummis, G. (2023). Fostering collaboration and creative thinking through extra-curricular challenges with primary and secondary students. Thinking Skills and Creativity, 48. Retrieved from https://doi.org/10.1016/j.tsc.2023.101296.
OECD. (2019). Framework for the Assessment of Creative Thinking in PISA 2021:Third Draft. Retrieved from https://www.oecd.org/pisa/publications/PISA-2021-creative-thinking-framework.pdf
Ölmefors, O., & Scheffel, J. (2021). High school student perspectives on flipped classroom learning. Pedagogy, Culture & Society,, 34(4), 707-724. doi:https://doi.org/10.1080/14681366.2021.1948444
Oon-Seng, T. (2023). Problem-Based Learning Innovation: Using Problems to Power Learning in the 21st Century. Cengage Learning. Retrieved from http://dspace.vnbrims.org:13000/jspui/bitstream/123456789/4228/1/Problem-based%20Learning%20Innovation%20Using%20problems%20to%20power%20learning%20in%20the%2021st%20century.pdf
Page, K. (2021). What is Brainstorming. Science and Children, 58(3). Retrieved from nsta.org/science-and-children/science-and-children-januaryfebruary-2021/what-brainstorming
Pasigon, C. P. (2022). Attributes Of Students Towards Problem Solving In Physics: A Step Towards Students’ Capacity Building. Journal of Positive School Psycholog, 6(10), 531-534. doi:https://journalppw.com/index.php/jpsp/article/view/13138/8523
Perera, T. (2022). Developing the Critical Thinking Skill of Secondary Science Students in Sri Lanka. Global Comparative EducationQ Journal of the WCCES, 6(1), 82-88. Retrieved from https://www.researchgate.net/profile/Shyama-Dehideniya/publication/365131557_Technology_Enhanced_STEM_Integrated_Science_Education_to_Develop_Humanistic_Values_and_Goals_Reviewing_the_Literature/links/63663dda37878b3e87850c68/Technology-Enhanced-STEM-Inte
Permanasari, Α., Rubini, Β., & Nugroho, O. (2021). STEM Education in Indonesia: Science Teachers’ and Students’ Perspectives. Joulnal of Innovation in Educational and Cultural Research, 2(1), 7-16. doi:10.46843/jiecr.v2i1.24
Petre, G.-E. (2020). Developing Students’ Leadership Skills Through Cooperative Learning: An Action Research Case Study. International Forum, 23(2), 143-162. Retrieved from https://deliverypdf.ssrn.com/delivery.php?ID=654125087110030107006007089031031076025033067063006028024026075018102087121107104006025011001016026124055018092067101105112089117023037077029103070018104125117085098095052046113071005001114021029093077086120102
Pohan, A., Asmin, A., & Menanti, A. (2020). The Effect of Problem Based Learning and Learning Motivation of Mathematical Problem Solving Skills of Class 5 Students at SDN 0407 Mondang. Budapest International Research and Critics in Linguistics and Education, 3(1). doi:https://doi.org/10.33258/birle.v3i1.850
Pozuelo-Muñoz, J., Calvo-Zueco, E., Sánchez-Sánchez, E., & Cascarosa-Salillas, E. (2023). Science Skills Development through Problem-Based Learning in Secondary Education. Educ. Sci., 13(1096). doi:https://doi.org/10.3390/educsci13111096
Razali, N., Ali, N., Safiyuddin, S., & Khalid, F. (2022). Design Thinking Approaches in Education and their Challenges: A Systematic Literature Review. Creative Education, 13, 2289-2299. doi:https://doi.org/10.4236/ce.2022.137145
Reyk, J., Leasa, M., Talakua, M., & Batlona, J. (2022). Research Based Learning: Added Value inStudents' Science Critical Thinking Skills. Jurnal Penelitian Pendidikan IPA, 8(1), 230-238. doi:10.29303/jppipa.v8i1.1121
Rifandi, R., Rahmi , Y., Widya, & Indrawati, E. (2020). Pre-service teachers’ perception on science, technology,engineering, and mathematics (stem) education. Journal of Physics: Conference Series. doi:10.1088/1742-6596/1554/1/012062
Samrat, R., Pooja, P., Naha, S., Rajvivay, S., Vikas, S., & Deepak, G. (2024). BIBLIOMETRIC ANALYSIS OF DESIGN THINKING TO DECIPHER RESEARCH TRENDS. Cahiers Megallanes, 06(2). doi:10.6084/m9.figshare.26310549
Seevaratnam, V., Gannaway , D., & Lodge, J. (2023). Design thinking-learning and lifelong learning for employability in the 21st century. Journal of Teaching and Learning for Graduate Employability, 14(1), 182-201. doi:https://doi.org/10.21153/jtlge2023vol14no1art1631
Shah, R. (2019). Effective Constructivist Teaching Learning in the Classroom. Shanlax International Journal of Education, 7(4), 1-13. Retrieved from file:///C:/Users/30697/Downloads/SSRN-id4004512.pdf
Sirotiak, T., & Sharma, A. (2019). Problem-Based Learning for Adaptability and Management Skills. J. Prof. Issues Eng. Educ. Prac., 145(4). doi:10.1061/(asce)ei.1943-5541.0000420
Susiani, T., Hidayah, R., Suhartono, & Salimi, M. (2019). Research-Based Learning (RBL): How to Improve Problem Solving Skills? PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON CURRENT ISSUES IN EDUCATION (ICCIE 2018). doi:https://doi.org/10.2991/iccie-18.2019.71
Syamsu, N., Suhendri, Zailani, & Hardivizon. (2022). Improving Students’ Collaboration Thinking Skill Under the Implementation of the Quantum Teaching Model. International Journal of Instruction, 15(3), 451-464. Retrieved from https://eric.ed.gov/?id=EJ1355589
Thi To Khuyen, N., Van Bien, N., Lin P-L, Lin J, & Chang C-Y. (2020). Measuring Teachers’ Perceptions to Sustain STEM Education Development. Sustainability, 12(4), 1531. doi:https://doi.org/10.3390/su12041531
Thornhill- Miller, B., Camarda, A., Mercier, M., Byrkhardt, J.-M., Morisseau, T., Bourgeois- Bougrine, S., . . . Lubart, T. (2023). Creativity, Critical Thinking, Communication, and Collaboration: Assessment, Certification, and Promotion of 21st Century Skills for the Future of Work and Education. J. Intell., 11(3), 54. doi:https://doi.org/10.3390/jintelligence11030054
Tomlinson, C., & Strickland, C. A. (2005). Differentiation in Practice Gradew 9-12. Virginia USA: Association for Supervision and Curriculum Development Alexandria. Retrieved from https://repository.bbg.ac.id/bitstream/591/1/Differentiation_in_Practice.pdf
van der Zanden, P., Denessen, E., Cillessen, A., & Meijer, P. (2020). Fostering critical thinking skills in secondary education to prepare students for university: teacher perceptions and practices. Research in Post-Compulsory Education, 25(4), 394-419. doi:https://doi.org/10.1080/13596748.2020.1846313
Wang, D., & Jia, Q. (2023). Twenty years of research development on teachers’ critical thinking: Current status and future implications——A bibliometric analysis of research articles collected in WOS. Thinking Skills and Creativity, 48. doi:https://doi.org/10.1016/j.tsc.2023.101252.
Warren, L. L. (2021). The Importance of Teacher Leadership Skills in the Classroom. Education Journal, 10(1), 8-15. doi: 10.11648/j.edu.20211001.12
Wu, T.-T., & Wu, Y.-T. (2020). Applying project-based learning and SCAMPER teaching strategies in engineering education to explore the influence of creativity on cognition, personal motivation, and personality traits,. Thinking Skills and Creativity. doi:https://doi.org/10.1016/j.tsc.2020.100631.
Yildirim, B., & Türk, C. (2018). Opinions of Secondary School Science and Mathematics Teachers on STEM Education. World Journal on Educational Technology: Current Issues, 10(1), 52-60. Retrieved from https://files.eric.ed.gov/fulltext/EJ1170368.pdf
Zhou, T., & Colomer, J. (2024). Cooperative Learning Promoting Cultural Diversity and Individual Accountability: A Systematic Review. Educ. Sci., 14(567). doi: https://doi.org/10.3390/educsci14060567
Zulyusri, Elfira, E., Lufri, & Santosa, T. (2023). Literature Study: Utilization of the PjBL Model in Science Education to Improve Creativity and Critical Thinking Skills. Journal of Research in Science Education, 9(1), 133-143. doi:https://doi.org/10.29303/jppipa.v9i1.2555
Βαϊνά , Μ. (n.d.). Σύγχρονες Διδακτικές Κατευθύνσεις. In Παιδαγωγική Επιμόρφωση Εκπαιδευτικών του ΟΑΕΔ. Αθήνα: Ε.Κ.Π.Α. - Α.Σ.ΠΑΙ.Τ.Ε.
Ζαβλανός, Μ. Μ. (2003). Διδακτική και αξιολόγηση. Αθήνα: Σταμούλη Α.Ε.
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