Availability and Utilization of Steam Educational Resources for Economic Diversification in Federal Colleges of Education Special Oyo
Authors
School of Secondary Education (Science Programmes) Federal College of Education Special Oyo (Nigeria)
School of Secondary Education (Science Programmes) Federal College of Education Special Oyo (Nigeria)
School of General Studies Education Federal College of Education Special Oyo (Nigeria)
School of Secondary Education (Science Programmes) Federal College of Education Special Oyo (Nigeria)
School of General Studies Education Federal College of Education Special Oyo (Nigeria)
Article Information
DOI: 10.51244/IJRSI.2026.1303000011
Subject Category: Education
Volume/Issue: 13/3 | Page No: 103-112
Publication Timeline
Submitted: 2026-03-07
Accepted: 2026-03-15
Published: 2026-03-25
Abstract
Economic diversification is a critical driver of sustainable national development, particularly in resource-dependent economies such as Nigeria, where over-reliance on crude oil has rendered the economy vulnerable to external shocks. Despite the recognised strategic importance of Science, Technology, Engineering, Arts, and Mathematics (STEAM) education in building the human capital needed for economic transformation, little empirical attention has been given to the state of STEAM resource provision and utilisation in Nigerian Colleges of Education institutions that are pivotal in shaping teacher quality at the foundational level. This study investigated the availability and utilisation of STEAM educational resources at the Federal College of Education (Special), Oyo, and their implications for teacher preparation and economic diversification. A descriptive survey research design was adopted. The target population comprised all 97 lecturers from the Departments of Science Education, Mathematics Education, Technology Education, and Arts Education. Total enumeration (census) was employed, making all 97 lecturers both the population and the sample, thereby eliminating sampling error. Data were collected using a researcher-developed instrument the STEAM Educational Resources Availability and Utilisation Questionnaire (SERAUQ) validated by subject matter experts and found to have a reliability coefficient of 0.82. Data were analysed using descriptive statistics, including means, standard deviations, frequency counts, and percentages. Findings revealed that STEAM resource provision is inadequate and skewed toward traditional science laboratory equipment and library materials, while critical infrastructure such as digital tools, engineering workshops, arts studios, and reliable power supply are significantly lacking. Utilisation rates were correspondingly low, constrained by poor maintenance culture, absence of institutional resource-management policies, and unstable electricity supply rather than any deficiency in lecturer competence. The study concludes that systemic and infrastructural deficiencies, not lecturer incompetence, are the primary barriers to effective STEAM delivery. It is recommended that the institution pursue balanced investment in STEAM infrastructure, establish a coherent resource-management policy, and strengthen power and ICT systems to fulfil its mandate in human capital development and national economic diversification.
Keywords
STEAM Education, Educational Resources, Teacher Preparation
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References
1. Adeyemi, T. O. (2008). Teachers' teaching experience and students' learning outcomes in secondary schools in Ondo State, Nigeria. Educational Research and Reviews, 3(6), 204. [Google Scholar] [Crossref]
2. Aghion, P., Meghir, C., & Vandenbussche, J. (2006). Distance to Frontier, Growth, and the Composition of Human Capital. Journal of Economic Growth. [Google Scholar] [Crossref]
3. Dare, E. A., Ellis, J. A., & Roehrig, G. H. (2018). Understanding science teachers' implementations of integrated STEM curricular units through a phenomenological multiple case study. International Journal of STEM Education, 5, 4. [Google Scholar] [Crossref]
4. Henriksen, D., Mehta, R., & Mehta, S. (2019). Design thinking gives STEAM to teaching: A framework that breaks disciplinary boundaries. In STEAM education: Theory and practice (pp. 57-78). Cham: Springer International Publishing. [Google Scholar] [Crossref]
5. Lashitew, A. A., Ross, M. L., & Werker, E. (2021). What drives successful economic diversification in resource-rich countries?. The World Bank Research Observer, 36(2), 164-196. [Google Scholar] [Crossref]
6. Olasehinde, K. J., & Olatoye, R. A. (2014). Scientific attitude, attitude to science and science achievement of senior secondary school students in Katsina State, Nigeria. Journal of Educational and Social Research, 4(1), 445-452. [Google Scholar] [Crossref]
7. Thibaut, L., et al. (2018). Integrated STEM education: A systematic review of instructional practices in secondary education. European Journal of STEM Education, 3(1), 02. [Google Scholar] [Crossref]
8. Valero, A., & Van Reenen, J. (2019). The economic impact of universities: Evidence from across the globe. Economics of Education Review, 68, 53–67. [Google Scholar] [Crossref]
9. Vygotsky, L. S. (1978). Mind in society: The development of higher psychological processes. Harvard University Press. [Google Scholar] [Crossref]
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