Challenges in Developing Pedagogical Content Knowledge among Mathematics Education Teachers at C. K. Tedam University of Technology and Applied Sciences
Implications for Teacher Education Reform in Ghana
DOI:
https://doi.org/10.64261/ijaarai.2.1.2.004Keywords:
pedagogical content knowledge, mathematics education, teacher education reform, instructional challenges, GhanaAbstract
This study investigated the challenges that mathematics education teachers encounter in developing pedagogical content knowledge (PCK) at C. K. Tedam University of Technology and Applied Sciences (CKTUTAS) in Ghana. PCK, which integrates subject matter expertise with pedagogical strategies, remains a critical determinant of teacher effectiveness and student learning. Using a descriptive survey design, data were collected from 98 undergraduate and postgraduate mathematics education students through a structured questionnaire. Results revealed that participants struggled most with applying multiple instructional strategies, diagnosing students’ misconceptions, and integrating curriculum knowledge into classroom practice. Limited exposure to practice-based training and insufficient opportunities for reflective teaching were identified as key barriers. These findings underscore the need for systemic reforms in teacher education to better integrate theory with practice. Policy implications include strengthening practicum experiences, promoting mentorship, and embedding PCK-focused modules in mathematics teacher education programs.References
Anamuah-Mensah, J. (2020). Improving mathematics education in Ghana: The role of teacher preparation and professional development. Ghana Journal of Education, 7(2), 15–28.
Ayebo, A., & Assuah, C. K. (2017). Teachers’ knowledge of mathematics and its connection to students’ learning. International Journal of Research in Education and Science, 3(1), 64–73. https://doi.org/10.21890/ijres.267373
Ball, D. L., Thames, M. H., & Phelps, G. (2008). Content knowledge for teaching: What makes it special? Journal of Teacher Education, 59(5), 389–407. https://doi.org/10.1177/0022487108324554
Baumert, J., Kunter, M., Blum, W., Brunner, M., Voss, T., Jordan, A., ... & Tsai, Y. M. (2010). Teachers’ mathematical knowledge, cognitive activation in the classroom, and student progress. American Educational Research Journal, 47(1), 133–180. https://doi.org/10.3102/0002831209345157
Blömeke, S., & Delaney, S. (2012). Assessment of teacher knowledge across countries: A review of the state of research. ZDM Mathematics Education, 44(3), 223–247. https://doi.org/10.1007/s11858-012-0429-7
Clarke, D., & Hollingsworth, H. (2002). Elaborating a model of teacher professional growth. Teaching and Teacher Education, 18(8), 947–967. https://doi.org/10.1016/S0742-051X(02)00053-7
Creswell, J. W., & Creswell, J. D. (2018). Research design: Qualitative, quantitative, and mixed methods approaches (5th ed.). SAGE Publications.
Darling-Hammond, L. (2017). Teacher education around the world: What can we learn from international practice? European Journal of Teacher Education, 40(3), 291–309. https://doi.org/10.1080/02619768.2017.1315399
Depaepe, F., Verschaffel, L., & Kelchtermans, G. (2013). Pedagogical content knowledge: A systematic review of the way in which the concept has pervaded mathematics educational research. Teaching and Teacher Education, 34, 12–25. https://doi.org/10.1016/j.tate.2013.03.001
Grossman, P. L. (1990). The making of a teacher: Teacher knowledge and teacher education. Teachers College Press.
Hill, H. C., Ball, D. L., & Schilling, S. G. (2008). Unpacking pedagogical content knowledge: Conceptualizing and measuring teachers’ topic-specific knowledge of students. Journal for Research in Mathematics Education, 39(4), 372–400.
Kind, V. (2009). Pedagogical content knowledge in science education: Perspectives and potential for progress. Studies in Science Education, 45(2), 169–204. https://doi.org/10.1080/03057260903142285
Kleickmann, T., Richter, D., Kunter, M., Elsner, J., Besser, M., Krauss, S., & Baumert, J. (2013). Teachers’ content knowledge and pedagogical content knowledge: The role of structural differences in teacher education. Journal of Teacher Education, 64(1), 90–106. https://doi.org/10.1177/0022487112460398
Mavhunga, E., & Rollnick, M. (2013). Improving PCK of chemical bonding in pre-service teachers. Journal of Research in Science Teaching, 50(8), 943–969. https://doi.org/10.1002/tea.21102
Osei, G. M. (2006). Teachers in Ghana: Issues of training, remuneration and effectiveness. International Journal of Educational Development, 26(1), 38–51. https://doi.org/10.1016/j.ijedudev.2005.07.015
Park, S., & Oliver, J. S. (2008). Revisiting the conceptualisation of pedagogical content knowledge (PCK): PCK as a conceptual tool to understand teachers as professionals. Research in Science Education, 38(3), 261–284. https://doi.org/10.1007/s11165-007-9049-6
Shulman, L. S. (1986). Those who understand: Knowledge growth in teaching. Educational Researcher, 15(2), 4–14. https://doi.org/10.3102/0013189X015002004
Tatto, M. T., Schwille, J., Senk, S., Ingvarson, L., Peck, R., & Rowley, G. (2012). Policy, practice, and readiness to teach primary and secondary mathematics in 17 countries: Findings from the IEA teacher education and development study in mathematics (TEDS-M). International Association for the Evaluation of Educational Achievement.
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