Improving the quality of mathematics education and achievement at both the College level and the Basic schools are dependent on effective teaching and learning strategies. This drives attention towards identifying underlying factors to competent performance which is dependent on the efficiency of teachers and students in the use of metacognitive learning strategies. To this effect, the interest was to determine whether College of Education students adopt metacognitive strategies to tackle problems on Geometric Theorem. To suit the purpose of the research, collective case study design was used to obtain the range of distribution of the variables of interest within the population. The study was conducted using nine Colleges of Education in the Northern Zone of the country. The sample comprising equal numbers of Elective Mathematics students and non-Elective Mathematics students were randomly drawn from two Colleges which were purposefully selected from the nine Colleges. Questionnaire was employed to collect the data which was adapted from a standard tool for measuring the subscales under metacognition. Mean and standard deviation for responses under the metacognition subscales (procedural knowledge, declarative knowledge, information management strategies, debugging strategies, planning, monitoring comprehension and evaluation) of the instrument showed that the respondents were conscious of their metacognitive strategies adopted in solving Geometric Theorem (GT) problems. The results revealed remarkable levels of consciousness in each of the subscales.
Abdellah, R. (2015). Metacognitive Awareness and Its Relation to Academic Achievement and Teaching Performance of Pre-Service Female Teachers in Ajman University in Procedia UAE. Procedia—Social and Behavioral Sciences, 174, 560-567. https://doi.org/10.1016/j.sbspro.2015.01.707
Belet, S., & Guven, M. (2011). Meta-Cognitive Strategy Usage and Epistemological Beliefs of Primary School Teacher Trainees. Educational Sciences: Theory and Practice, 11, 51-57.
Coughlin, J., & Montague, M. (2011). The Effects of Cognitive Strategy Instruction on the Mathematical Problem Solving of Adolescents with Spina Bifida. Journal of Special Education, 45, 171-183. https://doi.org/10.1177/0022466910363913
Crowe, S., Creswell, K., Robertson, A., Avery, A., & Sheikh, A. (2011). The Case Study Approach. BMC Medical Research Methodology, 11, Article No. 100. https://doi.org/10.1186/1471-2288-11-100
Domingo, A. (2016). Analysis of Mathematical Topics Perceived Difficult to Teach by High School Teachers in Belize. ReseachGate. https://www.researchgate.net/publication/306291682
Drew, C. (2020). 13 Examples of Metacognitive Strategies. Helpful Professor. https://helpfulprofessor.com/metacognitive-strategies
Du Toit, S., & Kotze, G. (2009). Metacognitive Strategies in the Teaching and Learning of Mathematics. Pythagoras, No. 70, 57-67. https://doi.org/10.4102/pythagoras.v0i70.39
Fauzi, A. (2013). The Effect of Academic Ability on Metacognitive Skills, Biology Learning Outcomes, and Retention of Class X High School Students with the Application of Cooperative Script Learning Strategies in Malang. Malang State University.
Flavell, J. H. (1987). Speculations about the Nature and Development of Metacognition. In F. E. Weinert, & R. H. Kluwe (Eds.), Metacognition, Motivation, and Understanding (pp. 21-29). Lawrence Erlbaum Associates.
Gurat, M. G., & Medula Jr., C. T. (2016). Metacognitive Strategy Knowledge Use through Mathematical Problem Solving amongst Pre-Service Teachers. American Journal of Educational Research, 4, 170-189.
Khan, B. R. (2020). Metacognitive Skills of Students in Mathematics Class with Supplemental Instruction and Online Homework. Journal of Mathematics Education at Teachers College, 11, 33-41.
Kim, B., Park, H., & Baek, Y. (2009). Not Just Fun, but Serious Strategies: Using Metacognitive Strategies in Game-Based Learning. Computers & Education, 52, 800-810. https://doi.org/10.1016/j.compedu.2008.12.004
Lin, X. (2001). Designing Metacognitive Activities. Educational Technology Research and Development, 49, 23-40. https://doi.org/10.1007/BF02504926 http://homepages.gac.edu/~dmoos/documents/DesigningMetacogAct_000.pdf
Marilyn, P. (2015). Metacognition: Nurturing Self-Awareness in the Classroom. https://www.edutopia.org/blog/8-pathways-metacognition-in-classroom-marilyn-price-mitchell
Mevarech, Z., & Kramarski, B. (2014). Critical Maths for Innovative Societies: The Role of Metacognitive Pedagogies. OECD Publishing. https://doi.org/10.1787/9789264223561-en
Montague, M., Krawec, J., Enders, C., & Dietz, S. (2014). The Effects of Cognitive Strategy Instruction on Mathematics Problem-Solving of Middle School Students of Varying Ability. Journal of Educational Psychology, 106, 469-481. https://doi.org/10.1037/a0035176
New Zealand Ministry of Education (2017). Early Childhood Curriculum. Learning Media. https://www.education.govt.nz/assets/Documents/Early-Childhood/ELS-Te-Whariki-Early-Childhood-Curriculum-ENG-Web.pdf
Nurajizah, U., Windyariani, S., & Setiono, S. (2018). Improving Students’ Metacognitive Awareness through Implementing Learning Journal. Indonesian Journal of Biology Education, 4, 105-112. https://doi.org/10.22219/jpbi.v4i2.5788
Ozkan, Y., & Kesen, A. (2008). Memorization in EFL Learning. Academia, 35, 58-71.
Panchu, P., Bahuleyan, B., Seethalakshmi, K., & Thomas, T. (2016). Metacognitive Awareness—Evaluation and Implications in Medical Students. International Journal of Research in Medical Sciences, 4, 3570-3575. https://doi.org/10.18203/2320-6012.ijrms20162331
Panda, S. (2017). Metacognitive Awareness of College of Education Students: Perspective of Age and Gender. Scholarly Research Journal for Interdisciplinary Studies, 4, 8402-8412. https://doi.org/10.21922/srjis.v4i37.10551
Pimentel, J. (2019). Some Biases in Likert Scaling Usage and Its Correction. International Journal of Sciences: Basic and Applied Research (IJSBAR), 45, 183-191.
Pintrich, P. R., & De Groot, E. V. (1990). Motivational and Self-Regulated Learning Components of Classroom Academic Performance. Journal of Educational Psychology, 82, 33-40. https://doi.org/10.1037/0022-0663.82.1.33
Pintrich, P. R., Smith, D., Garcia, T., & McKeachie, W. J. (1991). A Manual for the Use of the Motivated Strategies for Learning Questionnaire. University of Michigan.
Ratner, C. (1991). Vygotsky’s Sociohistorical Psychology and Its Contemporary Applications. Plenum Press. https://doi.org/10.1007/978-1-4899-2614-2
Resourceaholic (2014). Ideas and Resources for Teaching Secondary School Mathematics. https://www.resourceaholic.com/circletheorems.html
Rezvan, S., Ahmadi, S. A., & Abedi, M. R. (2006). The Effects of Metacognitive training on the Academic Achievement and Happiness of Esfahan University Conditional Students. Counselling Psychology Quarterly, 19, 415-428. https://doi.org/10.1080/09515070601106471
Schofield, L. (2012). Why Didn’t I Think of That? Teachers’ Influence on Students’ Metacognitive Knowledge of How to Help Students Acquire Metacognitive Abilities. Kairaranga, 13, 56-62. Retrieved August, 2021. https://files.eric.ed.gov/fulltext/EJ976674.pdf
Schraw, G., & Dennison, R. S. (1994). Assessing Metacognitive Awareness. Contemporary Educational Psychology, 19, 460-475. https://doi.org/10.1006/ceps.1994.1033
Schraw, G., Crippen, K. J., & Hartley, K. (2006). Promoting Self-Regulation in Science Education: Metacognition as Part of a Broader Perspective on Learning. Research in Science Education, 36, 111-139. https://doi.org/10.1007/s11165-005-3917-8
Schunk, D. H. (2012). Learning Theories: As Educational Perspective (6th ed.). Pearson Education, Inc.
Tachie, S. A. (2019). Meta-Cognitive Skills and Strategies Application: How This Helps Learners in Mathematics Problem-Solving. Eurasia Journal of Mathematics, Science, 15, Article No. em1702. https://doi.org/10.29333/ejmste/105364
Tansyani, W. (2016). The Effect of Learning Models and Metacognitive Awareness on Learning Outcomes of High School Students in the Subject Matter of Acids and Bases. Journal of Educational Science and Technology (EST), 2, 10-25.
University of Cape Coast (UCC) (2020). Course Manual for Number and Algebra for Colleges of Education.
Weinstein, C. E., & Palmer, D. R. (2002). User’s Manual: Learning and Study Strategies Inventory (3rd ed.). H & H Publishing Company. https://www.hhpublishing.com/LASSImanual.pdf
Yin, R. K. (2009). Case Study Research: Design and Methods (4th ed.). Sage Inc.