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Fig. 2. Process and game interface example



        References

        Abdul Kadir, M.N.B., Abdul Karim, M.M. & Rahman, N.A. 2016. Sikap Pelajar Terhadap Pembelajaran
        Fizik dan Hubungannya Dengan Pencapaian Dalam Kalangan Pelajar Sains. Jurnal Personalia Pelajar 19:
        31–51.
        Ahmed Qasem, A. & Viswanathappa, G.  2016. The teachers’ perception towards ICT integration: Professional
        development through Blended learning. Journal of Information Technology Education: Research 15: 561–575.
        https://www.informingscience.org/Publications/3562.
        Anderson, J.L. & Barnett, M. 2013. Learning Physics with Digital Game Simulations in Middle School Science.
        Journal of Science Education and Technology 22(6): 914–926.
        Brom, C., Šisler, V. & Slavík, R. 2010. Implementing digital game-based learning in schools:augmented
        learning environment of ‘Europe 2045.’ Multimedia Systems 16(1): 23–41.
        http://link.springer.com/10.1007/s00530-009-0174-0.
        Hafis, M. & Supianto, A.A. 2018. Mobile game design for learning chemical bonds with the endless run
        approach. International Journal of Interactive Mobile Technologies 12(8): 104–112.
        Jufrida, J., Kurniawan, W., Astalini, A., Darmaji, D., Kurniawan, D.A. & Maya, W.A.  2019. Students’ attitude
        and motivation in mathematical physics. International Journal of Evaluation and Research in Education 8(3):
        401–408.



















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