| dc.description.abstract |
This Design-Based Research (DBR) study investigated the adaptation of Realistic Mathematics
Education (RME) for teaching Grade 9 mathematics in an Ethiopian secondary school context.
The study addressed the adaptation gap between Ethiopia‘s Competency-Based Curriculum
vision and classroom reality by developing, implementing, and refining RME-based lesson
sequences through two iterative cycles. Cycle 1 focused on trigonometry using a flagpole
context, while Cycle 2 focused on polygon exterior angles using a culturally specific
metalworker context from Bahir Dar. Data were collected through multiple methods including,
reflective journaling, student-generated artifacts, video and audio recordings of classroom
discourse, photographs, and critical friend debriefing. Analysis was guided by the three core
RME principles: Reality Principle, Guided Reinvention, and Progressive Formalization. Findings
revealed that in Cycle 1, students independently reached the general level of progressive
formalization, discovering the constant ratio in height and shadow measurements, but
formalization remained teacher-directed with the introduction of ―tan A.‖ In Cycle 2, with
improved design features including a culturally sustained context, structured data tables, and
opportunities for student naming before formal terminology, all six groups completed the entire
progressive formalization trajectory independently, articulating the formula 360° ÷ n in their own
words, with one group using variable notation: ―Let ‗n‘ be number of sides.‖ Ten evidence-based
design principles emerged for effective RME adaptation in Ethiopian secondary mathematics,
including culturally sustained realistic context, eliciting student ideas without judgment,
structured investigation with student ownership, pattern recognition before formalization, student
naming before formal terminology, formula emergence from data patterns, authentic handling of
measurement variation, cross-group comparison and discussion, application back to original
context, and teacher as designer and summarizer. The study contributes empirical evidence of
RME‘s effectiveness beyond its original Dutch context, elaborates the process of progressive
formalization, and provides practical guidance for mathematics teachers, teacher educators,
curriculum developers, and policymakers seeking to implement the Competency-Based
Curriculum‘s vision of student-centered, contextually relevant mathematics instruction. |
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