Main Article Content
Abstract
Sometimes our smartphone's internal storage is complete, and we must download an application that is very necessary at that time; this is where numeracy plays a role in solving this problem, namely the way we download the desired application with a complete smartphone's internal storage. This study aims to produce valid and practical PISA-type questions and activities using a smartphone context and potentially effective on students' numeracy skills. This design research-type development study comprised a preliminary and formative evaluation phase consisting of the design stage, self-evaluation stage, expert review stage, one-to-one stage, and small group stage. This research used question grids, question cards, assessment rubrics, lesson plans, PISA-type questions, and student activity sheets as its tools. This study was initiated owing to the insufficient numeracy skills of Indonesian students. This study focuses on seventh-grade students at secondary school number 59 Palembang, Indonesia. The qualitative findings of this research are based on field data collected through walkthroughs, observations, tests, interviews, and document reviews. This research yielded PISA-type questions and activities, namely four activity questions and six evaluation questions with smartphone context that seventh graders may utilize to develop their numeracy abilities. In conclusion, PISA-type questions and activities in the context of smartphones can be used in classroom learning to strengthen students' numeracy skills.
Keywords
Article Details
Copyright (c) 2023 Mutia Febri Mouli, Zulkardi, Ratu Ilma Indra Putri
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References
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- Ahyan, S., Zulkardi, & Darmawijoyo. (2014). Developing mathematics problems based on PISA level. IndoMS-JME, 5(1), 47-56. Retrieved form http://dx.doi.org/10.22342/jme.5.1.1448.47- 56.
- As’ari, A. R., Tohir, M., Valentino, E., Imron, Z., & Taufiq, I. (2016). Mathematics Teacher Book 2013 Revised 2017 Class VII [in Bahasa]. Jakarta: Kemendikbud.
- Bakker, A. (2018). Design Research in Education: A Practical Guide for Early Career Researchers. London: Routledge.
- Efriani, A., Putri, R. I. I., & Hapizah. (2019). Sailing context in PISA-like mathematics problems. Journal on Mathematics Education, 10(2), 256-276. https://doi.org/10.22342/jme.10.2.5245.265-276.
- Fitriyani, Ika., Mastur, & Zaenuri. (2017). Students’ mathematical literacy ability in terms of emotional intelligence in hands on activity assisted cps learning [in Bahasa]. Unnes Journal of Mathematics Education Research, 6(2), 139-147. Retrieved from https://journal.unnes.ac.id/sju/index.php/ujmer/article/view/20457.
- Fosnot, C. T. & Dolk, M. (2001). Young Mathematician at Work: Constructing Number Sense, Addition, and Substraction. Porstmouth, NH: Heinemann.
- Han, W., Susanto, D., Demayani, S., Pandora, P., Hanifah, N., Miftahussururi, Nento, M.N., & Akbari, Q.S. (2017). Numerical Literacy Support Material [in Bahasa]. Jakarta: Kemendikbud. Retrieved from https://repositori.kemdikbud.go.id/11628/1/materi-pendukung-literasi- numerasi-rev.pdf.
- Hendriana, H., Johanto, T., & Sumarmo, U. (2018). The role of problem based learning to improve student’s mathematical problem-solving ability and self confidience. Journal on Mathematics Education, 9(2), 291-300. https://doi.org/10.22342/jme.9.2.5394.291-300.
- Jannah, R. D., Putri, R. I. I., & Zulkardi. (2019). Soft tennis and volleyball contexts in asian games for PISA-like mathematics problems. Journal on Mathematics Education, 10(1), 157-170. http://dx.doi.org/10.22342/jme.10.1.5248.157-170.
- Kemendikbud. (2017). National Literacy Movement Numerical Literacy Supporting Materials [in Bahasa]. Jakarta: Tim Gerakan Literasi Nasional.
- Kemendikbud (2021). Numerical Literacy Module in Elementary School [in Bahasa]. Jakarta: Kemendikbud.
- Kohar, A. W., Wardani, A. K., & Fachrudin, A. D. (2019). Profiling context-based mathematics tasks developed by novice PISA-like task designers. Journal of Physics Conference Series, 1200(1), 012014. https://doi.org/10.1088/1742-6596/1200/1/012014.
- Maharani, L., Putri, R. I. I., & Hartono, Y. (2019). Aquatic in Asian Games: context of PISA-like mathematics problem. Journal on Mathematics Education, 10(3), 459-470. https://doi.org/10.22342/jme.10.3.5252.459-470.
- Meryansumayeka, Zulkardi, Putri, R. I. I., & Hiltrimartin, C. (2021). Student’ strategies in solving PISA mathematical problems reviewed from problem-solving strategies. Jurnal Pendidikan Matematika, 15(1), 37-48. https://doi.org/10.22342/jpm.15.1.10405.37-48.
- Munayati, Z., Zulkardi, & Santoso, B. (2015). Study of mathematics textbook questions for class X curriculum 2013 using the PISA framework [in Bahasa]. Jurnal Pendidikan Matematika, 9(2), 188-206. http://dx.doi.org/10.22342/jpm.9.2.2161.188–206.
- NCTM. (2000). Princples and Standards for School Mathematics. Reston, VA: NCTM. Retrieved from https://www.nctm.org/uploadedFiles/Standards_and_Positions/PSSM_ExecutiveSummary.pdf.
- Nusantara, D. S., Zulkardi, & Putri, R. I. I. (2020). Designing PISA-like mathematics problem in COVID-19 pandemic (PISAComat). Journal of Physics Conference Series, 1657(1), 012057. https://doi.org/10.1088/1742-6596/1657/1/012057.
- Nusantara, D. S., Zulkardi, & Putri, R. I. I. (2021) Designing PISA-like mathematics task using a COVID-19 context (PISACOMAT). Journal on Mathematics Education, 12(2), 349-364. https://doi.org/10.22342/jme.12.2.13181.349-364.
- OECD. (2016). PISA 2015 Results: Excellence and Equity in Education (Volume 1). Retrieved from https://www.oecd.org/education/pisa-2015-results-volume-i-9789264266490-en.htm.
- OECD. (2018). PISA 2022 Mathematics Framework Draft. Paris: OECD Publishing. Retrieved from https://pisa2022- maths.oecd.org/files/PISA%202022%20Mathematics%20Framework%20Draft.pdf.
- OECD. (2019a). PISA 2018 Assessment and Analytical Framework. Paris: OECD Publishing. Retrieved from https://www.oecd-ilibrary.org/education/pisa-2018-assessment-and-analytical- framework_b25efab8-en.
- OECD. (2019b). PISA 2018 Results Combined Executive Summaries Volume I, II & III. Paris: OECD Publishing. Retrieved from https://www.oecd.org/pisa/Combined_Executive_Summaries_PISA_2018.pdf.
- Putri, R. I. I. & Zulkardi. (2020). Designing PISA-like mathematics task using Asian Games context.
- Journal on Mathematics Education, 11(1), 135-144. http://dx.doi.org/10.22342/jme.11.1.9786.135-144.
- Risnawati, Mardianita, W., & Hernety. (2016). Development of student worksheet problem solving rules of enumeration using metacognitive approach for SMA class XI [in Bahasa]. Jurnal Penelitian dan Pembelajaran Matematika, 9(1), 138-144. http://dx.doi.org/10.30870/jppm.v9i1.991.
- Sari, R. H. N. & Wijaya, A. (2017). Mathematical literacy of senior high school students in Yogyakarta. Jurnal Riset Pendidikan Matematika, 4(1), 100–107. http://dx.doi.org/10.21831/jrpm.v4i1.10649.
- Sari, S. P., Zulkardi, & Darmawijoyo. (2021). Students’ numeracy skills relating to algebra topic using COVID-19 context. Jurnal Teori dan Aplikasi Matematika, 5(1), 182-192. https://doi.org/10.31764/jtam.v5i1.3881.
- Sholihah, D. A. & Shanti, W. N. (2017). Mathematical critical thinking disposition in learning using the socratic method [in Bahasa]. Jurnal Karya Pendidikan Matematika, 4(2), 1–7. https://doi.org/10.26714/jkpm.4.2.2017.1-9.
- Sistyawati, R. I., Zulkardi, Hapizah, & Sitisyarah, K. (2022). The development of PISA questions and activities using social distancing context during pandemic. Jurnal Pendidikan Matematika, 16(3), 239-256. https://doi.org/10.22342/jpm.16.3.17358.239-256.
- Wati, T., Zulkardi, & Susanti, E. (2015). Development of PMRI teaching materials on financial literacy topics in social arithmetic class VII [in Bahasa]. Jurnal Pendidikan Matematika, 9(1), 990- 1005. https://doi.org/10.22342/jpm.9.1.2129.22%20-%2034.
- Zulfah, Fauzan, A., & Armiati. (2018). Development of student worksheets based on problem based learning for class VIII mathematics [in Bahasa]. Jurnal Pendidikan Matematika, 12(1), 33-46. https://doi.org/10.22342/jpm.12.2.4646.33-46.
- Zulkardi. (2002). Developing a learning environment on realistic mathematics education for Indonesian student teachers. Published Dissertation. Enschede: University of Twente.
- Zulkardi & Putri, R. I. I. (2006). Design your own contextual math problem [in Bahasa]. Prosiding KNM13. Semarang. Retrived from http://eprints.unsri.ac.id/610/.
- Zulkardi & Putri, R. I. I. (2010). Development of a support blog to help Indonesian students and teachers learn Indonesian Realistic Mathematics Education [in Bahasa]. Balitbang. Retrieved from http://repository.unsri.ac.id/id/eprint/6777.
- Zulkardi, Meryansumayeka, Putri, R. I. I., Alwi, Z., Nusantara, D. S., Ambarita, S. M., Maharani, Y., & Puspitasari, L. (2020). How students work with PISA-like mathematical tasks using COVID-19 context. Journal on Mathematics Education, 11(3), 405-416. https://doi.org/10.22342/jme.11.3.12915.405-416.
References
Achera, L. J., Belecina, R. R., & Garvida, M. D. (2015). The effect of group guided discovery approach on the performance of students in geometry. International Journal of Multidiciplinary Research and Modern Eductaion (IJMRME), 1(2), 331-342. Retrieved from http://rdmodernresearch.org/.
Ahyan, S., Zulkardi, & Darmawijoyo. (2014). Developing mathematics problems based on PISA level. IndoMS-JME, 5(1), 47-56. Retrieved form http://dx.doi.org/10.22342/jme.5.1.1448.47- 56.
As’ari, A. R., Tohir, M., Valentino, E., Imron, Z., & Taufiq, I. (2016). Mathematics Teacher Book 2013 Revised 2017 Class VII [in Bahasa]. Jakarta: Kemendikbud.
Bakker, A. (2018). Design Research in Education: A Practical Guide for Early Career Researchers. London: Routledge.
Efriani, A., Putri, R. I. I., & Hapizah. (2019). Sailing context in PISA-like mathematics problems. Journal on Mathematics Education, 10(2), 256-276. https://doi.org/10.22342/jme.10.2.5245.265-276.
Fitriyani, Ika., Mastur, & Zaenuri. (2017). Students’ mathematical literacy ability in terms of emotional intelligence in hands on activity assisted cps learning [in Bahasa]. Unnes Journal of Mathematics Education Research, 6(2), 139-147. Retrieved from https://journal.unnes.ac.id/sju/index.php/ujmer/article/view/20457.
Fosnot, C. T. & Dolk, M. (2001). Young Mathematician at Work: Constructing Number Sense, Addition, and Substraction. Porstmouth, NH: Heinemann.
Han, W., Susanto, D., Demayani, S., Pandora, P., Hanifah, N., Miftahussururi, Nento, M.N., & Akbari, Q.S. (2017). Numerical Literacy Support Material [in Bahasa]. Jakarta: Kemendikbud. Retrieved from https://repositori.kemdikbud.go.id/11628/1/materi-pendukung-literasi- numerasi-rev.pdf.
Hendriana, H., Johanto, T., & Sumarmo, U. (2018). The role of problem based learning to improve student’s mathematical problem-solving ability and self confidience. Journal on Mathematics Education, 9(2), 291-300. https://doi.org/10.22342/jme.9.2.5394.291-300.
Jannah, R. D., Putri, R. I. I., & Zulkardi. (2019). Soft tennis and volleyball contexts in asian games for PISA-like mathematics problems. Journal on Mathematics Education, 10(1), 157-170. http://dx.doi.org/10.22342/jme.10.1.5248.157-170.
Kemendikbud. (2017). National Literacy Movement Numerical Literacy Supporting Materials [in Bahasa]. Jakarta: Tim Gerakan Literasi Nasional.
Kemendikbud (2021). Numerical Literacy Module in Elementary School [in Bahasa]. Jakarta: Kemendikbud.
Kohar, A. W., Wardani, A. K., & Fachrudin, A. D. (2019). Profiling context-based mathematics tasks developed by novice PISA-like task designers. Journal of Physics Conference Series, 1200(1), 012014. https://doi.org/10.1088/1742-6596/1200/1/012014.
Maharani, L., Putri, R. I. I., & Hartono, Y. (2019). Aquatic in Asian Games: context of PISA-like mathematics problem. Journal on Mathematics Education, 10(3), 459-470. https://doi.org/10.22342/jme.10.3.5252.459-470.
Meryansumayeka, Zulkardi, Putri, R. I. I., & Hiltrimartin, C. (2021). Student’ strategies in solving PISA mathematical problems reviewed from problem-solving strategies. Jurnal Pendidikan Matematika, 15(1), 37-48. https://doi.org/10.22342/jpm.15.1.10405.37-48.
Munayati, Z., Zulkardi, & Santoso, B. (2015). Study of mathematics textbook questions for class X curriculum 2013 using the PISA framework [in Bahasa]. Jurnal Pendidikan Matematika, 9(2), 188-206. http://dx.doi.org/10.22342/jpm.9.2.2161.188–206.
NCTM. (2000). Princples and Standards for School Mathematics. Reston, VA: NCTM. Retrieved from https://www.nctm.org/uploadedFiles/Standards_and_Positions/PSSM_ExecutiveSummary.pdf.
Nusantara, D. S., Zulkardi, & Putri, R. I. I. (2020). Designing PISA-like mathematics problem in COVID-19 pandemic (PISAComat). Journal of Physics Conference Series, 1657(1), 012057. https://doi.org/10.1088/1742-6596/1657/1/012057.
Nusantara, D. S., Zulkardi, & Putri, R. I. I. (2021) Designing PISA-like mathematics task using a COVID-19 context (PISACOMAT). Journal on Mathematics Education, 12(2), 349-364. https://doi.org/10.22342/jme.12.2.13181.349-364.
OECD. (2016). PISA 2015 Results: Excellence and Equity in Education (Volume 1). Retrieved from https://www.oecd.org/education/pisa-2015-results-volume-i-9789264266490-en.htm.
OECD. (2018). PISA 2022 Mathematics Framework Draft. Paris: OECD Publishing. Retrieved from https://pisa2022- maths.oecd.org/files/PISA%202022%20Mathematics%20Framework%20Draft.pdf.
OECD. (2019a). PISA 2018 Assessment and Analytical Framework. Paris: OECD Publishing. Retrieved from https://www.oecd-ilibrary.org/education/pisa-2018-assessment-and-analytical- framework_b25efab8-en.
OECD. (2019b). PISA 2018 Results Combined Executive Summaries Volume I, II & III. Paris: OECD Publishing. Retrieved from https://www.oecd.org/pisa/Combined_Executive_Summaries_PISA_2018.pdf.
Putri, R. I. I. & Zulkardi. (2020). Designing PISA-like mathematics task using Asian Games context.
Journal on Mathematics Education, 11(1), 135-144. http://dx.doi.org/10.22342/jme.11.1.9786.135-144.
Risnawati, Mardianita, W., & Hernety. (2016). Development of student worksheet problem solving rules of enumeration using metacognitive approach for SMA class XI [in Bahasa]. Jurnal Penelitian dan Pembelajaran Matematika, 9(1), 138-144. http://dx.doi.org/10.30870/jppm.v9i1.991.
Sari, R. H. N. & Wijaya, A. (2017). Mathematical literacy of senior high school students in Yogyakarta. Jurnal Riset Pendidikan Matematika, 4(1), 100–107. http://dx.doi.org/10.21831/jrpm.v4i1.10649.
Sari, S. P., Zulkardi, & Darmawijoyo. (2021). Students’ numeracy skills relating to algebra topic using COVID-19 context. Jurnal Teori dan Aplikasi Matematika, 5(1), 182-192. https://doi.org/10.31764/jtam.v5i1.3881.
Sholihah, D. A. & Shanti, W. N. (2017). Mathematical critical thinking disposition in learning using the socratic method [in Bahasa]. Jurnal Karya Pendidikan Matematika, 4(2), 1–7. https://doi.org/10.26714/jkpm.4.2.2017.1-9.
Sistyawati, R. I., Zulkardi, Hapizah, & Sitisyarah, K. (2022). The development of PISA questions and activities using social distancing context during pandemic. Jurnal Pendidikan Matematika, 16(3), 239-256. https://doi.org/10.22342/jpm.16.3.17358.239-256.
Wati, T., Zulkardi, & Susanti, E. (2015). Development of PMRI teaching materials on financial literacy topics in social arithmetic class VII [in Bahasa]. Jurnal Pendidikan Matematika, 9(1), 990- 1005. https://doi.org/10.22342/jpm.9.1.2129.22%20-%2034.
Zulfah, Fauzan, A., & Armiati. (2018). Development of student worksheets based on problem based learning for class VIII mathematics [in Bahasa]. Jurnal Pendidikan Matematika, 12(1), 33-46. https://doi.org/10.22342/jpm.12.2.4646.33-46.
Zulkardi. (2002). Developing a learning environment on realistic mathematics education for Indonesian student teachers. Published Dissertation. Enschede: University of Twente.
Zulkardi & Putri, R. I. I. (2006). Design your own contextual math problem [in Bahasa]. Prosiding KNM13. Semarang. Retrived from http://eprints.unsri.ac.id/610/.
Zulkardi & Putri, R. I. I. (2010). Development of a support blog to help Indonesian students and teachers learn Indonesian Realistic Mathematics Education [in Bahasa]. Balitbang. Retrieved from http://repository.unsri.ac.id/id/eprint/6777.
Zulkardi, Meryansumayeka, Putri, R. I. I., Alwi, Z., Nusantara, D. S., Ambarita, S. M., Maharani, Y., & Puspitasari, L. (2020). How students work with PISA-like mathematical tasks using COVID-19 context. Journal on Mathematics Education, 11(3), 405-416. https://doi.org/10.22342/jme.11.3.12915.405-416.