PENGEMBANGAN INSTRUMEN SELF ASSESSMENT TECHNOLOGICAL PEDAGOGICAL CONTENT KNOWLEDGE (TPACK) CALON GURU MATEMATIKA BERBASIS HOTs
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Abadi, A. A. (2006). Problematika penentuan sampel dalam penelitian bidang perumahan dan permukiman. DIMENSI: Journal of Architecture and Built Environment, 34(2), 138-146. https://doi.org/10.9744/dimensi.34.2.pp.%20138-146.
Abbitt, J. T. (2011). Measuring technological pedagogical content knowledge in preservice teacher education: a review of current methods and instrumens. Journal of Research on Technology in Education, 43 (4), 281–300. Doi: https://doi.org/10.1080/15391523.2011.10782573.
Adamson, K. A., & Prion, S. (2013). Reliability: measuring internal consistency using cronbach’s α. Clinical Simulation in Nursing, 9(5), e179–e180. Doi: https://doi.org/10.1016/j.ecns.2012.12.001.
Agyei, D. D., & Voogt, J. (2012). Developing technological pedagogical content knowledge in pre-service mathematics teachers through collaborative design. Australasian Journal of Educational Technology, 28(4), 547–564. Doi: https://doi.org/10.14742/ajet.827.
Aiken, L. R. (1980). Content validity and reliability of single items or questionnaires. Educational and psychological measurement, 40(4), 955-959. https://doi.org/10.1177/001316448004000419
Bakar, Nurul S. A., Maat, S. M., & Rosli, R. (2020). Mathematics teacher's self-efficacy of technology integration and technological pedagogical content knowledge. Journal on Mathematics Education, 11(2), 259-276. Doi: http://doi.org/10.22342/jme.11.2.10818.259-276.
Darmawan, I. P. A., & Sujoko, E. (2013). Revisi taksonomi pembelajaran benyamin s. bloom. Satya Widya, 29(1), 30. Doi: https://doi.org/10.24246/j.sw.2013.v29.i1.p30-39.
Drummond, A., & Sweeney, T. (2016). Can an objective measure of technological pedagogical content knowledge (TPACK) supplement existing TPACK measures?. British Journal of Educational Technology, 48(4), 928–939. Doi: https://doi.org/10.1111/bjet.12473.
Fujita, T. (2011). “That journal has a history”: overview of the technological tools and theories studied in the international journal for technology in mathematics education, 2004-2018. International Journal for Technology in Mathematics Education, 18(3). Doi: https://doi.org/10.1564/tme_v25.4.03.
Graham, C. R. (2011). Theoretical considerations for understanding technological pedagogical content knowledge (TPACK). Computers and Education, 57(3), 1953–1960. Doi: https://doi.org/10.1016/j.compedu.2011.04.010.
Hendriana, H., & Soemarmo, U. (2014). Penilaian pembelajaran matematika. Bandung: Refika Aditama.
Istianah, E. (2013). Meningkatkan kemampuan berpikir kritis dan kreatif matematik dengan pendekatan model eliciting activities (MEAs) pada siswa. Jurnal Pengajaran MIPA, 2(1), 51. Doi: https://doi.org/https://doi.org/10.22460/infinity.v2i1.p43-54
Kaput, J. J., & Thompson, P. W. (1994). Technology in mathematics education research: the first 25 years in the JRME. Journal for Research in Mathematics Education, 25(6), 676-684. Doi: https://doi.org/10.5951/jresematheduc.25.6.0676.
Mishra, P., & Koehler, M. J. (2006). Technological pedagogical content knowledge: a framework for teacher knowledge. Teachers College Record, 108(6), 1017-1054. Doi: https://doi.org/10.1002/bjs.7342.
Nurhayati, Y., Zakiah, N. E., & Amam, A. (2020). Integrasi contextual teaching learning (CTL) dengan geogebra: dapatkah meningkatkan kemampuan koneksi matematis siswa?. Teorema: Teori dan Riset Matematika, 5(1), 27–34. Doi: http://dx.doi.org/10.25157/teorema.v5i1.3349.
Önal, N. (2016). Development, validity and reliability of TPACK scale with pre-service mathematics teachers. International Online Journal of Educational Sciences, 8(2), 1-15 Doi: https://doi.org/10.15345/iojes.2016.02.009.
Schmidt, D. A., Baran, E., Thompson, A. D., Mishra, P., Koehler, M. J., & Shin, T. S. (2009). Technological pedagogical content knowledge (TPACK): the development and validation of an assessment instrumen for preservice teachers. Journal of Research on Technology in Education, 42(2), 123-149. https://doi.org/10.1080/15391523.2009.10782544.
Schmidt, D. A., Baran, E., Thompson, A. D., Mishra, P., Koehler, M. J., & Shin, T. S. (2009). Examining preservice teachers’ development of technological pedagogical content knowledge in an introductory instructional technology course. Proceedings of society for information technology teacher education international conference, 42(1), 4145–4151. http://www.editlib.org/p/31308.
Shulman, L. S. (1986). Those who understand: knowledge growth in teaching. Educational Researcher, 15(2), 4–14. Doi: https://doi.org/10.3102/0013189X015002004.
Solihah, S. (2019). Meningkatkan kemampuan berpikir kritis matematik siswa mts dengan menggunakan metode brain-based learning. Teorema: Teori dan Riset Matematika, 4(1), 55. Doi: https://doi.org/10.25157/teorema.v4i1.1934.
Somatanaya, A. G., & Nugraha, D. A. (2018). Pemetaan high order thingking (HOT) matematis siswa sekolah menengah pertama se-kota tasikmalaya. Teorema: Teori dan Riset Matematika, 3(2), 187. Doi: https://doi.org/10.25157/teorema.v3i2.1170.
Soto, C. M., & Segovia, J. L. (2009). Intervalos de confianza asimétricos para el índice la validez de contenido: un programa visual basic para la v de aiken. Anales de Psicología/Annals of Psychology, 25(1), 169-171. Doi: https://doi.org/10.6018/analesps.
Yati, D. (2019). Penggunaan teknologi informasi berbasis industri kreatif untuk memudahkan transfer knowledge berpikir hots di man insan cendekia. Seminar Nasional Pendidikan Bahasa dan Sastra (pp. 64-71).
Yurdakul, I. K., Odabasi, H. F., Kilicer, K., Coklar, A. N., Birinci, G., & Kurt, A. A. (2012). The development, validity and reliability of TPACK-deep: a technological pedagogical content knowledge scale. Computers and Education, 58(3), 964–977. Doi: https://doi.org/10.1016/j.compedu.2011.10.012.
DOI: http://dx.doi.org/10.25157/teorema.v6i1.4960
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