The Use of Concept Cartoons in Overcoming The Misconception in Electricity Concepts
Abstract
Keywords
Concept cartoons , Collaborative learning , Misconceptions in DC circuits , Scientific Argumentation
References
- Aydeniz, M., & Ozdilek, Z. (2015). Assessing Pre-Service Science Teachers' Understanding of Scientific Argumentation: What Do They Know about Argumentation after Four Years of College Science? Science Education International, 26(2), 217-239.
- Aydin, G. (2015). The effects of computer-aided concept cartoons and outdoor science activities on light pollution. International Electronic Journal of Elementary Education, 7(2), 142.
- Azzarkasyi, M., Rizal, S., & Kasmawati. (2019). The Identification of Student Misconceptions on the Concept of Electricity Using the CRI Decision Matrix Three Level Test. Asian Journal of Science Education, 1(1), 10-15.
- Berge, M., & Danielsson, A. T. (2013). Characterising learning interactions: a study of university students solving physics problems in groups. Research in science education, 43(3), 1177-1196.
- Birisci, S., Metin, M., & Karakas, M. (2010). Pre-service elementary teachers’ views on concept cartoons: a sample from Turkey. Middle-East Journal of Scientific Research, 5(2), 91-97.
- Borges, A.T., Tecnico, C., & Gilbert, J. (1998). Models of magnetism.International Journal of Science Education,20(3), 361–378.
- Cengizhan, S. (2011). Prospective Teachers' Opinions about Concept Cartoons Entegrated with Modular Instructional Design. Egitim ve Bilim, 36(160), 93.
- de Sá Ibraim, S., & Justi, R. (2016). Teachers' knowledge in argumentation: contributions from an explicit teaching in an initial teacher education programme. International Journal of Science Education, 38(12), 1996-2025.
- Driver, R. (1989). Students’ conceptions and the learning of science. International journal of science education, 11(5), 481-490.
- Driver, R., Newton, P., & Osborne, J. (2000). Establishing the norms of scientific argumentation in classrooms. Science Education, 84(3), 287-312.
