UPSI Digital Repository (UDRep)
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Abstract : Universiti Pendidikan Sultan Idris |
The advantage of computational tools over human brains is the speed, but the initiative ability of human brains is not owned by computational tools. The perfect combination of thinking and computing lays the foundation of science and gives birth to a series of achievements in technology. The introduction of technology through the subjects of Information and Communication Technology (ICT) in schools nowadays is just limited to using the applications. Computational thinking gives knowledge that builds structural thinking, critical power, and creativity by learning the computing process itself. These are what people need to enhance digital literacy. The way to learn it could be in many strategies. CS Unplugged was used in this research to deliver computational thinking in a simple way related to minimum infrastructure in the remote area for the children at elementary schools. Some activities were done as kinaesthetic learning in certain topics of CS Unplugged. This kind of method does not need some computer devices to get children closer to computer science. A challenge was given to assess the ability of ICT learning which is computational thinking. The children show their enthusiasm for learning, proved by their final score in a challenge. The children?s score significantly improved in learning ICT by using CS Unplugged. ? 2021 Institute of Physics Publishing. All rights reserved. |
References |
Bell, T., Alexander, J., Freeman, I., & Grimley, M. (2009). Computer science unplugged: School students doing real computing without computers. The New Zealand Journal of Applied Computing and Information Technology, 13(1), 20-29. Retrieved from www.scopus.com Bn, T., & Vahrenhold, J. (2018). Adventures between Lower Bounds and Higher Altitudes, Retrieved from www.scopus.com Chaudhary, V., Agrawal, V., Sureka, P., & Sureka, A. (2017). An experience report on teaching programming and computational thinking to elementary level children using lego robotics education kit. Paper presented at the Proceedings - IEEE 8th International Conference on Technology for Education, T4E 2016, 38-41. doi:10.1109/T4E.2016.016 Retrieved from www.scopus.com Cicirello, V. A., King, V., & Drive, F. (2013). A cs unplugged activity for the online classroom. J.Comput.Sci.Coll, 28(6), 162-168. Retrieved from www.scopus.com Deschryver, M. D., & Yadav, A. (2015). Creative and computational thinking in the context of new literacies: Working with teachers to scaffold complex technology-mediated approaches to teaching and learning. Journal of Technology and Teacher Education, 23(3), 411-431. Retrieved from www.scopus.com Gilster, P. (1997). Digital Literacy, Retrieved from www.scopus.com Jun, S. J., Han, S. G., Kim, H. C., & Lee, W. G. (2014). Assessing the computational literacy of elementary students on a national level in korea. Educational Assessment, Evaluation and Accountability, 26(4), 319-332. doi:10.1007/s11092-013-9185-7 McInerney, C., Hinchey, M., & McQuade, E. (2009). Investment in information and communication technologies in the irish education sector doi:10.1007/978-3-642-03115-1_9 Retrieved from www.scopus.com Nanjundeswaraswamy, T. S., & Swamy, D. R. (1990). Review of Literature on Computational Thinking, 7(2), 201-214. Retrieved from www.scopus.com Olitsky, N. H., & Cosgrove, S. B. (2016). The better blend? flipping the principles of microeconomics classroom. International Review of Economics Education, 21, 1-11. doi:10.1016/j.iree.2015.10.004 Rahmaniah, S. E. (0000). STOP HOAX indonesia: Digital literacy and education to prevent hoax and hate speech in the regional head election of west kalimantan 2020. Talent Development & Excellence, 12(2), 2020. Retrieved from www.scopus.com Rassol, N. (2009). Literacy for sustainable development in the age of information. WBC Book Manuacturers, Retrieved from www.scopus.com Ribeiro, L., Nunes, D. J., Da Cruz, M. K., & De Souza Matos, E. (2013). Computational thinking: Possibilities and challenges. Paper presented at the Proceedings - 2013 Workshop-School on Theoretical Computer Science, WEIT 2013, 22-25. doi:10.1109/WEIT.2013.32 Retrieved from www.scopus.com Sahin, A., Cavlazoglu, B., & Zeytuncu, Y. E. (2015). Flipping a college calculus course: A case study. Educational Technology and Society, 18(3), 142-152. Retrieved from www.scopus.com Tapscott, D. (2009). Grown Up Digital: How the Net Generation is Changing Your World, Retrieved from www.scopus.com Tchakounté, F., Amadou Calvin, K., Ari, A. A. A., & Fotsa Mbogne, D. J. (2022). A smart contract logic to reduce hoax propagation across social media. Journal of King Saud University - Computer and Information Sciences, 34(6), 3070-3078. doi:10.1016/j.jksuci.2020.09.001 Wang, L. (2011). Computational thinking and computer fundamental education. Paper presented at the 2011 International Conference on Computer Science and Service System, CSSS 2011 - Proceedings, 1158-1159. doi:10.1109/CSSS.2011.5974984 Retrieved from www.scopus.com Yadav, A., Hong, H., & Stephenson, C. (2016). Computational thinking for all: Pedagogical approaches to embedding 21st century problem solving in K-12 classrooms. TechTrends, 60(6), 565-568. doi:10.1007/s11528-016-0087-7 Zhang, X., & Zou, H. (2009). On computational tools, computational thinking and computational methods. Paper presented at the Proceedings of the 1st International Workshop on Education Technology and Computer Science, ETCS 2009, , 1 503-507. doi:10.1109/ETCS.2009.120 Retrieved from www.scopus.com |
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