Discovery Learning Effect on Mathemathic Learning

Main Article Content

David Okwina

Abstract

This study aimed to improve the mathematics learning through the application of the Discovery Learning model with a scientific approach. The application of the Discovery Learning learning model with an effective scientific approach can increase the frequency of activeness and activities in the teaching and learning process according to the observations of student attitudes during the implementation of classroom action research. It showed that Student learning outcomes that are not entirely satisfactory are also caused by several factors, namely individual student factors, student environment and school environment.

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How to Cite
Okwina, D. . (2020). Discovery Learning Effect on Mathemathic Learning. Journal of Asian Multicultural Research for Educational Study, 1(1), 21-27. https://doi.org/10.47616/jamres.v1i1.12
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References

Barjesteh, H. (2019). Dynamicity of Transformative L2 Materials Preparation Model in EFL Classroom: Place of Critical Language Pedagogy in Teacher Education. Journal of Teaching Language Skills, 38(2), 47-79.

Brooks, S. L., & Madden, R. G. (2011). Epistemology and ethics in relationship-centered legal education and practice. NYL Sch. L. Rev., 56, 331.

Gregory, E. M. (2006). Development and validation of an instrument of continuing professional development for inservice physical educators. The University of New Mexico.

Hirst, P. H. (2010). Knowledge and the curriculum (International Library of the Philosophy of Education Volume 12): A collection of philosophical papers. Routledge.

Klahr, D., & Nigam, M. (2004). The equivalence of learning paths in early science instruction: Effects of direct instruction and discovery learning. Psychological science, 15(10), 661-667.

Mariyana, R. (2019). The Effectiveness of Guided-Discovery and Instructional Media on Early Mathematical Skills. Indonesian Journal of Early Childhood Education Studies, 8(1), 34-37.

Mercer, N., & Fisher, E. (1992). How do teachers help children to learn? An analysis of teachers' interventions in computer-based activities. Learning and instruction, 2(4), 339-355.

Moore, M. (1986). Self-directed learning and distance education. International Journal of E-Learning & Distance Education/Revue internationale du e-learning et la formation à distance, 1(1), 7-24.

Reid, N. (2008). A scientific approach to the teaching of chemistry. What do we know about how students learn in the sciences, and how can we make our teaching match this to maximise performance?. Chemistry Education Research and Practice, 9(1), 51-59.

Reif, F. (1981). Teaching problem solving‐A scientific approach. The Physics Teacher, 19(5), 310-316.

Setiawan, D., & Wilujeng, I. (2016). The Development Of Scientific-Approach-Based Learning Instrumentsintegrated With Red Onion Farming Potency In Brebes Indonesia. Jurnal Pendidikan IPA Indonesia, 5(1), 22-30.

Wells, G. (1993). Reevaluating the IRF sequence: A proposal for the articulation of theories of activity and discourse for the analysis of teaching and learning in the classroom. Linguistics and education, 5(1), 1-37.

Wieman, C. (2007). Why not try a scientific approach to science education?. Change: The Magazine of Higher Learning, 39(5), 9-15.

Yulianti, D. (2017, April). Problem-based learning model used to scientific approach based worksheet for physics to develop senior high school students characters. In Journal of Physics: Conference Series (Vol. 824, No. 1, p. 012009).