Research Article

The Use of Concept Cartoons in Overcoming The Misconception in Electricity Concepts

Volume: 10 Number: 1 January 30, 2023
EN

The Use of Concept Cartoons in Overcoming The Misconception in Electricity Concepts

Abstract

Electricity is a very important concept in learning Physics. Mastering this concept can make learning Physics meaningful and relatable to real life problems. However, literature indicates that students have poor conceptual understanding of concepts about electricity. The current research aims to improve Form 5 (aged 17 years) students’ understanding of direct current circuits by using Concept Cartoons Worksheets. Concept Cartoons are A single-group pre-test/post-test investigation was carried out using seven Concept Cartoons Worksheets designed to address common conceptual misconceptions about direct current circuits with a total of 30 physics student participants. The seven Concept Cartoons were modified based on the Concept Inventory Test “Determining and Interpreting Resistive Electric Circuit Concepts Test (DIRECT). Concept Cartoons Worksheets were used to correct students’ misconceptions about direct current circuits and to increase their level of conceptual understanding. The data collected were analysed quantitatively to obtain percentages, means, and t-test values. The descriptive statistics showed an increase in the level of student’s conceptual understanding after the use of Concept Cartoons. The t-test analysis reported that the difference was significant. The results show that Malaysian students do have misconceptions about electricity concepts. However, Concept Cartoons Worksheets are effective to overcome students’ misconceptions about electrical concepts, specifically toward current circuits. Concept Cartoons are not only effective in overcoming misconceptions among students, they are also refreshing and unique because of the cartoons presented while relating to Physics concepts that are abstract.

Keywords

Concept cartoons , Collaborative learning , Misconceptions in DC circuits , Scientific Argumentation

References

  1. 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.
  2. 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.
  3. 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.
  4. 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.
  5. 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.
  6. Borges, A.T., Tecnico, C., & Gilbert, J. (1998). Models of magnetism.International Journal of Science Education,20(3), 361–378.
  7. Cengizhan, S. (2011). Prospective Teachers' Opinions about Concept Cartoons Entegrated with Modular Instructional Design. Egitim ve Bilim, 36(160), 93.
  8. 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.
  9. Driver, R. (1989). Students’ conceptions and the learning of science. International journal of science education, 11(5), 481-490.
  10. Driver, R., Newton, P., & Osborne, J. (2000). Establishing the norms of scientific argumentation in classrooms. Science Education, 84(3), 287-312.
APA
Chın Sıong, L., Yunn Tyug, O., Phang, F. A., & Pusppanathan, J. (2023). The Use of Concept Cartoons in Overcoming The Misconception in Electricity Concepts. Participatory Educational Research, 10(1), 310-329. https://doi.org/10.17275/per.23.17.10.1

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