Enhancing Students' Perceptions of Biology Classroom Learning Environment in an Active Learning Environment: A Comparative Effect of Two Constructivist Teaching and Learning Strategies

Authors

DOI:

https://doi.org/10.58197/qsfz9724

Keywords:

Concept mapping, cooperative mastery learning, classroom learning environment, achievement, attitude towards Biology

Abstract

In this study, the effects of concept mapping (CM) and cooperative mastery learning (CML) strategies on students' perceptions of the classroom learning environment were compared. To achieve this, a sample of 295 students from nine intact Biology classes in coeducational boarding schools in Nyamagabe District, Rwanda, was selected using purposive sampling and taught Biology using the CM and CML strategies. The Biology Classroom Learning Environment Questionnaire (BCLEQ) was used to collect data before and after teaching activities. Data were analyzed through descriptive statistics (mean and SD) and a multivariate analysis of variance (MANOVA). The results revealed that both strategies promoted students' perceptions of CLE, with CM enhancing the learning environment more than the CML strategy. Besides, there was no significant gender difference in the perceptions of the BCLE. Moreover, neither teaching strategy nor gender interacted with students' perceptions of the classroom learning environment. It was concluded that the use of CM and CML in teaching and learning Biology improves students' perceptions of the classroom learning environment. Therefore, it is recommended for Biology teachers to promote a pleasant classroom learning environment by adopting the CM and CML teaching strategies.

References

Adikwu, M.U. (2012) 'Curriculum Development in Science, Technology and Mathematics (STM) Education', in A Keynote Address presented at the 49th Annual Conference of Science Teachers Association of Nigeria, Yenagoa.

Ajayi, O. V., & Angura, T.M. (2017) 'Improving senior secondary students' retention in electrolysis using collaborative concept mapping instructional strategy', Greener Journal of Educational Research, 7(6), pp. 87–92. Available at: https://doi.org/https://doi.org/10.15580/gjer.2017.6.092417140.

Aldridge, J.M., Fraser, B.J. and Huang, T.C.I. (1999) 'Investigating classroom environments in Taiwan and Australia with multiple research methods', Journal of Educational Research, 93(1), pp. 48–62. Available at: https://doi.org/10.1080/00220679909597628.

Aluri, V.L.N. and Fraser, B.J. (2019) 'Students' perceptions of mathematics classroom learning environments: measurement and associations with achievement', Learning Environments Research, 22(3), pp. 409–426. Available at: https://doi.org/10.1007/s10984-019-09282-1.

Amponsah, K.D. et al. (2018) 'Physical science students' perceptions of their chemistry classroom environment and the students' resultant attitudes towards chemistry', Journal of Studies in Education, 8(3), p. 17. Available at: https://doi.org/10.5296/jse.v8i3.13289.

Awofala, A.O. (2016) 'Effect of concept mapping strategy on students' achievement in junior secondary school', International Journal of Mathematics Trends and Technology-, 2(3), pp. 11–16.

Bii, K.J. and Chris, M.W. (2019) 'Effect of collaborative concept mapping teaching strategy on students' achievement and attitudes towards mathematics in selected secondary schools in Kenya', European Journal of Education Studies, 6(5), pp. 135–162. Available at: https://doi.org/10.5281/zenodo.3370017.

Bizimana, E., Mutangana, D. and Mwesigye, A. (2022a) 'Enhancing students' attitude towards biology using concept mapping and cooperative mastery learning instructional strategies : Implication on gender', International Journal on Math, Science and Technology Education, 10(1), pp. 242–266. Available at: https://doi.org/https://doi.org/10.31129/ LUMAT.10.1.1728.

Bizimana, E., Mutangana, D. and Mwesigye, A. (2022b) 'Performance analysis of biology education under the implementation of lower secondary school biology-competence-based curriculum : Policy implications', Interdisciplinary Journal of Environmental and Science Education, 18(1), pp. 1–12. Available at: https://doi.org/https://doi.org/10.21601/ijese/11331.

Bizimana, E., Mutangana, D. and Mwesigye, A. (2022c) 'Students ’ perceptions of the classroom learning environment and engagement in cooperative mastery learning-based biology classroom instruction’, Education Research International, 2022.

Bressington, D.T. et al. (2018) ‘Concept mapping to promote meaningful learning, help relate theory to practice and improve learning self-efficacy in Asian mental health nursing students: A mixed-methods pilot study’, Nurse Education Today, 60(September 2017), pp. 47–55. Available at: https://doi.org/10.1016/j.nedt.2017.09.019.

Byukusenge, C., Nsanganwimana, F., & Tarmo, A.P. (2022) ‘Difficult topics in the revised biology curriculum for advanced level secondary schools in Rwanda: Teachers’ perceptions of causes and remedies’, Journal of Biological Education, 57(5), pp. 1112–1128. Available at: https://doi.org/https://doi.org/10.1080/00219266.2021.2012225.

Byusa, E., Kampire, E. and Mwesigye, A.R. (2020) ‘Analysis of teaching techniques and scheme of work in teaching chemistry in Rwandan secondary schools’, Eurasia Journal of Mathematics, Science and Technology Education, 16(6), pp. 1–9. Available at: https://doi.org/10.29333/EJMSTE/7833.

Chukwuemeka, I.P. and Dorgu, T.E. (2019) ‘Students ’ perceptions of the difficult topics in biology at senior school level in Delta State , Nigeria’, Journal of Advances in Education and Philosophy, 3(2), pp. 62–66. Available at: https://doi.org/10.21276/jaep.2019.3.2.4.

Cohen, L.; Manion, L.; Morrison, K. (2018) Research methods in education. 8th edn. New York: Routledge.

Cohen, J. (2013) Statistical power analysis for the behavioral sciences. Routledge.

Cohn, S.T. and Fraser, B.J. (2016) ‘Effectiveness of student response systems in terms of learning environment, attitudes and achievement’, Learning Environments Research, 19(2), pp. 153–167. Available at: https://doi.org/10.1007/s10984-015-9195-0.

Creswell, J. (2014) Research design: Qualitative, quantitative, and mixed methods approaches. 4th edn. Lincoln: SAGE Publications, Inc.

Deieso, D. and Fraser, B.J. (2019) ‘Learning environment, attitudes and anxiety across the transition from primary to secondary school mathematics’, Learning Environments Research, 22(1), pp. 133–152. Available at: https://doi.org/10.1007/s10984-018-9261-5.

Elliott, S. et al. (2017) ‘Engaging students in large health classes with active learning strategies’, Journal of Physical Education, Recreation & Dance, 88(6), pp. 38–43. Available at: https://doi.org/10.1080/07303084.2017.1330163.

Etobro, A.B. and Fabinu, O.E. (2017) ‘Students’ perception of difficult concepts in biology in Senior Secondary Schools in Lagos State, Nigeria’, Global Journal of Educational Research, 16(2017), pp. 139–147.

Fernando, S.Y. and Marikar, F.M. (2017) ‘Constructivist teaching/learning theory and participatory teaching methods’, Journal of Curriculum and Teaching, 6(1), p. 110. Available at: https://doi.org/10.5430/jct.v6n1p110.

Filgona, Jacob et al. (2016) ‘Effects of concept mapping and brainstorming instructional strategies on junior secondary school students ’ achievement in social studies in Mubi Educational Zone , Nigeria’, British Journal of Education, Society & Behavioural Science, 18(2), pp. 1–18. Available at: https://doi.org/10.9734/BJESBS/2016/29057.

Fraser, B.J., Aldridge, J.M. and Adolphe, F.S.G. (2010) ‘A cross-national study of secondary science classroom environments in Australia and Indonesia’, Research in Science Education, 40(4), pp. 551–571. Available at: https://doi.org/10.1007/s11165-009-9133-1.

Fraser, B.J. and Raaflaub, C. (2013) ‘Subject and sex differences in the learning environment - perceptions and attitudes of Canadian mathematics and science students using laptop computers’, Curriculum and Teaching, 28(1), pp. 57–78. Available at: https://doi.org/10.7459/ct/28.1.05.

Fraser, J.B. (2012) ‘Classroom learning environments: Retrospect, context and prospect’, in In B. J. Fraser, K. G. Tobin, & C. J. McRobbie (Eds.),. New York: Springer., pp. 1191–1239.

Ghoreishi, M. K., Kargar, F. R., Ajilchi, B., & Kazemlou, M. (2013) ‘The effect of combined mastery-cooperative learning on working memory capacity , self-efficacy and academic achievement in grade skipping Autor ( es ): Publicado por : URL persistente : DOI : Accessed : Ghoreishi , Monir Kalantar ; Kargar , Flor Rezaei ’;, International studies in time perspective, 84(1), pp. 470–474.

Jena, A.K. (2012) ‘Does constructivist approach applicable through concept maps to achieve meaningful learning in science?’, Asia-Pacific Forum on Science Learning and Teaching, 13(1), pp. 1–23.

Jia, C. et al. (2020) ‘The gender differences in science achievement, interest, habit, and creativity’, Science Education International, 31(2), pp. 195–202. Available at: http://survey.hshsl.umaryland.edu/?url=http://search.ebscohost.com/login.aspx?direct=true&db=eric&AN=EJ1257786&site=ehost-live.

Joda, F.M. (2019) ‘Effects of instructional scaffolding strategy on senior secondary biology students’ academic achievement and retention in Taraba State, Nigeria’, Education Quarterly Reviews, 2(2), pp. 269–275. Available at: https://doi.org/10.31014/aior.1993.02.02.59.

Kaur, J., Singh, G. (2015) ‘Effect of Cooperative Mastery Learning Strategy on Achievement in Social Studies of IX Graders’, International Journal of Science and Research (IJSR), 4(5), pp. 2013–2015.

Keter, J.K., Ronoth, R.P. (2016) ‘Impact of cooperative mastery learning approach on students’ academic achievement in chemistry by gender in Bomet County, Kenya’, American Journal of Education and Practice, 1(1), pp. 49–58. Available at: https://www.researchgate.net/publication/270847813_Does_Gender_Matter_for_Collaborative_Learning.

Keter J.K (2013) Effects of cooperative mastery learning approach on secondary school students’ motivation and achievement in chemistry in Bomet County, Kenya. Egerton University.

Keter J.K (2018) Effects of computer based cooperative mastery learning on secondary school students’ skills acquisition, motivation and achievement in chemistry practicals in Bomet Country, Kenya.

Khan, F. M., & Masood, M. (2015) ‘The effectiveness of interactive multimedia courseware with a cooperative mastery approach in enhancing higher-order thinking skills in learning cellular respiration’, Procedia Social and Behavioral Sciences, 176(2015), pp. 977–984. Available at: https://doi.org/https://doi.org/10.20448/801.43.434.447.

Khine, M.S., Fraser, B.J. and Afari, E. (2020) ‘Structural relationships between learning environments and students’ non-cognitive outcomes: secondary analysis of PISA data’, Learning Environments Research, 23(3), pp. 395–412. Available at: https://doi.org/10.1007/s10984-020-09313-2.

Klein, C. et al. (2019) ‘Learning analytics tools in higher education: Adoption at the intersection of institutional commitment and individual action’, Review of Higher Education, 42(2), pp. 565–593. Available at: https://doi.org/10.1353/rhe.2019.0007.

Kwan, Y.W. and Wong, A.F.L. (2014) ‘The constructivist classroom learning environment and its associations with critical thinking ability of secondary school students in Liberal Studies’, Learning Environments Research, 17(2), pp. 191–207. Available at: https://doi.org/10.1007/s10984-014-9158-x.

Kyado, J.J., O. Abah, C. and Samba, R.M.A. (2019) ‘Effect of collaborative concept mapping instructional strategy on secondary students’ achievement in difficult biology concepts’, American Journal of Social Sciences and Humanities, 4(3), pp. 434–447. Available at: https://doi.org/10.20448/801.43.434.447.

Langley, J., Wolstenholme, D. and Cooke, J. (2018) ‘Collective making’ as knowledge mobilization: The contribution of participatory design in the co-creation of knowledge in healthcare’, BMC Health Services Research, 18(1), pp. 1–11. Available at: https://doi.org/10.1186/s12913-018-3397-y.

Machado, C.T. and Carvalho, A.A. (2020) ‘Concept mapping: Benefits and challenges in higher education’, Journal of Continuing Higher Education, 68(1), pp. 38–53. Available at: https://doi.org/10.1080/07377363.2020.1712579.

Manishimwe, H., Shivoga, W.A. and Nsengimana, V. (2023) ‘Enhancing students’ achievement in biology using inquiry-based learning in Rwanda’, International Journal of Evaluation and Research in Education, 12(2), pp. 809–817. Available at: https://doi.org/10.11591/ijere.v12i2.23375.

MINEDUC (2018) 2018 Education Statistics.

Muema, S. and Mulwa, D. Mailu, S. (2018) ‘Relationship between teaching method and students ’ performance in mathematics in public secondary schools in Dadaab Sub County , Garissa County ; Kenya’, Journal of Research & Method in Education, 8(5), pp. 59–63. Available at: https://doi.org/10.9790/7388-0805055963.

Ndihokubwayo, K., Habiyaremye, H.T. (2018) ‘Why did Rwanda shift from knowledge to competence based curriculum? Syllabuses and textbooks point of view’, African Research Review, 12(51), pp. 38–48.

Ndihokubwayo K. (2017) Research on improvised experiment materials for science lesson in Rwanda. Hiroshima University.

Ndihokubwayo, K., Uwamahoro, J. and Ndayambaje, I. (2020) ‘Implementation of the competence-based learning in Rwandan physics classrooms: First assessment based on the reformed teaching observation protocol’, Eurasia Journal of Mathematics, Science and Technology Education, 16(9), p. em1880. Available at: https://doi.org/10.29333/ejmste/8395.

Njoku, M.I.A., Mgbomo, T. (2021) ‘Effect of field trip and demonstration methods on the achievement of secondary school students in biology’, Rivers State University Journal of Education, 24(2), pp. 55–64.

Nkundabakura, P. et al. (2023) ‘Usage of modernized tools and innovative methods in teaching and learning mathematics and sciences: A case of 10 districts in Rwanda’, Education and Information Technologies, 28(2023), pp. 11379–11400. Available at: https://doi.org/10.1007/s10639-023-11666-z.

Nnenna, G.E , Adukwu, B.C. (2018) ‘Influence of gender and school location on senior secondary school student’s achievement in biology in Agbani Education Zone of Enugu State’, Journal of Education and Practice, 9(21), pp. 45–51.

Novak, J. D. and Gowin, D.B. (1984) Learning how to learn. Cambridg: Cambridge University Press.

Novak, J.D. And Canas, A.J. (2006) The theory underlying concept maps and how to Construct them. Available at: https://web.stanford.edu/dept/SUSE/projects/ireport/articles/concept_maps/The Theory Underlying Concept Maps.pdf (Accessed: 9 April 2019).

Nsengimana, V. (2021) ‘Implementation of competence-based curriculum in Rwanda: Opportunities and challenges’, Rwandan Journal of Education, 5(1), pp. 129–137.

Ntawiha, P. (2016) Educational Inputs and their implications for output in public secondary schools in Nyarugenge and Nyamasheke districts, Rwanda. Kenyatta.

Odutuyi, M.O. (2015) ‘Influence of laboratory learning environment on students’ academic performance in secondary school chemistry’, US-China Education Review A, 5(12). Available at: https://doi.org/10.17265/2161-623x/2015.12.005.

Ogunleye, B.O. and Babajide, V. (2020) ‘Commitment to science and gender as determinants of students achievement and practical skills in physics’, Journal of the Science Teachers Association of Nigeria, 46(1), pp. 125–135.

Oluwatoyin, A.B. and Gabriel, M.T. (2018) ‘Two innovative teaching strategies and academic performance of senior secondary school students in beeiology : Ekiti State Experience’, American Journal of Educational Science, 4(4), pp. 127–135.

Omwirhiren, E.M. and Khalil, U.I. (2016) ‘The effects of two teachers’ instructional methods on students’ learning outcomes in chemistry in selected senior secondary school in Kaduna Metropolis, Nigeria’, Journal of Education and Practice, 7(15), pp. 1–9. Available at: http://search.ebscohost.com/login.aspx?direct=true&db=eric&AN=EJ1103149&site=ehost-live.

Onu, W.O., Anyaegbunam, N. and U., Uzoigwe, A. (2020) ‘Improving biology students’ interest and achievement through collaborative instructional strategy’, Journal of Education, Society and Behavioural Science, 33(2), pp. 9–20. Available at: https://doi.org/10.9734/jesbs/2020/v33i230198.

Otukile-Mongwaketse, M. (2018) ‘Teacher centered dominated approaches: Their implications for todays inclusive classrooms’, International Journal of Psychology and Counselling, 10(2), pp. 11–21. Available at: https://doi.org/10.5897/ijpc2016.0393.

Ozoji, B.E. (2020) ‘Effects of concept mapping technique on Nigerian junior secondary school students’ cognitive development and achievement in basic science and technology (Integrated science)’, in Science Education in the 21st Century. Singapore: Springer Singapore, pp. 95–111. Available at: https://doi.org/10.1007/978-981-15-5155-0_7.

Peer, J. and Fraser, B.J. (2015) ‘Sex, grade-level and stream differences in learning environment and attitudes to science in Singapore primary schools’, Learning Environments Research, 18(1), pp. 143–161. Available at: https://doi.org/10.1007/s10984-013-9142-x.

van Riesen, S.A.N. et al. (2019) ‘The influence of prior knowledge on the effectiveness of guided experiment design’, Interactive Learning Environments, 0(0), pp. 1–17. Available at: https://doi.org/10.1080/10494820.2019.1631193.

Robinson, E. and Fraser, B.J. (2013) ‘Kindergarten students’ and parents’ perceptions of science classroom environments: Achievement and attitudes’, Learning Environments Research, 16(2), pp. 151–167. Available at: https://doi.org/10.1007/s10984-013-9138-6.

Rogers, J.R. and Fraser, B.J. (2022) ‘Sex and frequency of practical work as determinants of middle-school science students’ learning environment perceptions and attitudes’, Learning Environments Research [Preprint]. Available at: https://doi.org/10.1007/s10984-022-09426-w.

Rwanda Education Board (2015) Competence-based curriculum. Curriculum framework pre-primary to upper second- ary. Rwanda Education Board. Kigali, Rwanda.

Rwanda Education Board (2018) Primary and Secondary Results. Kigali, Rwanda.

Sakiyo, J. and Waziri, K. (2015) ‘Concept mapping strategy: An effective tool for improving students’ academic achievement in biology’, Journal of Education in Science, Environment and Health, 1(1), p. 56. Available at: https://doi.org/10.21891/jeseh.06591.

Shadreck, M. (2012) ‘Zimbabwean science students’ perceptions of their classroom learning environments and attitude towards science’, Mediterranean Journal of Social Sciences, 3(11), pp. 415–425. Available at: https://doi.org/10.5901/mjss.2012v3n11p415.

Stevenson, K.T. et al. (2021) ‘How outdoor science education can help girls stay engaged with science’, International Journal of Science Education, 43(7), pp. 1090–1111. Available at: https://doi.org/10.1080/09500693.2021.1900948.

Sushma, S.M. (2020) ‘Scientific attitude and academic achievement -a study of secondary school students’, International Journal of Psychosocial Rehabilitation, 20(4), pp. 840–847.

Tshewang, R., Chandra, V. and Yeh, A. (2017) ‘Students’ and teachers’ perceptions of classroom learning environment in Bhutanese eighth-grade mathematics classes’, Learning Environments Research, 20(2), pp. 269–288. Available at: https://doi.org/10.1007/s10984-016-9225-6.

Tural, G. (2015) ‘Active learning environment with lenses in geometric optics’, Asia-Pacific Forum on Science Learning and Teaching, 16(1), pp. 1–18.

Udo, N.N. and Ubana, A.U. (2016) ‘Impact of prior knowledge of behavioural objectives on students’ academic achievement in physics’, AFRREV STECH: An International Journal of Science and Technology, 5(1), pp. 95–104. Available at: https://doi.org/10.4314/stech.v5i1.9.

Ugwu, L., Jatau, A. and Gwamna, S.K. (2020) ‘Impact of discussion method on performance and retention in biology among senior secondary students in Katsina Education ZOone, Katsina State, Nigeria’, International Journal of Multidisciplinary and Current Educational Research (IJMCER), 2(6), pp. 76–83.

Wan Nasriha, W.M.S., Ahmad, C. and Setyaningsih, C.N. (2021) ‘Difficult topics in Biology from the view point of students and teachers based on KBSM implementation’, EDUCATUM Journal of Science, Mathematics and Technology, 8(1), pp. 49–56. Available at: https://ejournal.upsi.edu.my/index.php/EJSMT/index.https://doi.org/10.37134/ejsmt.vol8.1.6.2021.

Woldeamanuel, Y.W., Abate, N.T. and Berhane, D.E. (2020) ‘Effectiveness of concept mapping based teaching methods on grade eight students’ conceptual understanding of photo synthesis at Ewket Fana Primary School, BahirDar, Ethiopia’, Eurasia Journal of Mathematics, Science and Technology Education, 16(12), pp. 1–16. Available at: https://doi.org/10.29333/ejmste/9276.

Wolf, S.J. and Fraser, B.J. (2008) ‘Learning Environment , Attitudes and Achievement among Middle-school Science Students Using Inquiry-based Laboratory Activities’, Research in Science Education, 38(3), pp. 321–341. Available at: https://doi.org/10.1007/s11165-007-9052-y.

Yağci, E. and Güneyli, A. (2018) ‘An analysis of the professional competencies of Turkish language and literature teachers on the basis of the ability of using and managing technology’, Eurasia Journal of Mathematics, Science and Technology Education, 14(7), pp. 3389–3404. Available at: https://doi.org/10.29333/ejmste/91834.

Zandvakili, E. et al. (2018) ‘Mastery learning in the classroom: Concept maps, critical thinking, collaborative assessment (M3CA) using multiple Choice Items (MCIs)’, Journal of Education and Learning, 7(6), pp. 45–56. Available at: https://doi.org/10.5539/jel.v7n6p45.

Zeidan, A. (2010) ‘The relationship between grade 11 palestinian attitudes toward biology and their perceptions of the biology learning environment’, International Journal of Science and Mathematics Education, 8(5), pp. 783–800. Available at: https://doi.org/10.1007/s10763-009-9185-8.

Downloads

Published

2025-11-23

Data Availability Statement

The data used to support the findings of this study are available upon request to the author

Issue

Section

Journal Article

How to Cite

Enhancing Students’ Perceptions of Biology Classroom Learning Environment in an Active Learning Environment: A Comparative Effect of Two Constructivist Teaching and Learning Strategies. (2025). Journal of Classroom Practices, 4(1), 129-147. https://doi.org/10.58197/qsfz9724

Similar Articles

1-10 of 13

You may also start an advanced similarity search for this article.