Development of HOTS Assessment Instruments on Static Electricity Materials for High School Level
Abstract
This development research is motivated by the lack of Higher Order Thinking Skill (HOTS) assessment instruments at 3 Public High School in physics subjects, especially static electricity. One of the efforts to assist teachers in knowing the development of students' higher-order thinking skills is by developing the HOTS assessment instrument. This study aims to develop a valid and practical HOTS assessment instrument for class XII static electricity at SMA N 3 Padang and to analyze the reliability of the items using the 4-D model research and development (R&D) method (four-D models) developed by Thiagarajan. , consists of 4 stages: (1) define, (2) design, (3) develop, and (4) disseminate. However, this research is limited to the development stage due to time and cost constraints. The research results on needs analysis show that the static electricity material developed follows the 2013 curriculum seen from Basic Competencies, along with its indicators. Validation analysis with three validators obtained 88.32% results with very valid category; practicality analysis obtained 95.55% results with very practical category; and reliability analysis the question obtained is 0.24, which is categorized as low. The implications of this research are to assist teachers in developing HOTS assessment instruments on other materials.
Keywords
Full Text:
PDFReferences
Abdullah, A. H., Abidin, N. L. Z., & Ali, M. (2015). Analysis of students’ errors in solving higher order thinking skills (hots) problems for the topic of fraction. Asian Social Science, 11, 133.
Amalia, A. N., & Widayati, A. (2012). Analisis butir soal tes kendali mutu kelas xii sma mata pelajaran ekonomi akuntansi di kota yogyakarta tahun 2012. Jurnal Pendidikan Akuntansi Indonesia, 10(1). https://doi.org/10.21831/jpai.v10i1.919
Brookhart. (2010). How to assess higher-order thiking skills in your classroom. United States of Amerika: ASCD Member Book.
Brookhart. (2014). How to design questions and tasks to assess student thinking. United States of Amerika: ASCD Member Book.
Budiman, A., & Jailani, J. (2014). Pengembangan instrumen asesmen higher order thinking skill (hots) pada mata pelajaran matematika smp kelas viii semester 1. Jurnal Riset Pendidikan Matematika, 1(2), 139. https://doi.org/10.21831/jrpm.v1i2.2671
Chinedu, C. C., Olabiyi, O. S., & Kamin, Y. (2015). Strategies for improving higher order thinking skills in teaching and learning of design and technology education. Journal of Technical Education and Training, 7(2), 43.
Fitri, M. J., Trisna, S., & Yanti, I. R. (2021). The development of a physics module based on the sets learning model to improve students. Conceptual Understanding. 6(3), 254–262.
Hadi, S., & Novaliyosi. (2019). TIMSS indonesia (trends in international mathematics and science study). Prosiding Seminar Nasional & Call For Papers Program Studi Magister Pendidikan Matematika Universitas Siliwangi, 562–569.
Liana, Y. R., Linuwih, S., & Sulhadi, S. (2020). The Development of hots test instrument of thermodynamics law for senior high school. Berkala Ilmiah Pendidikan Fisika, 8(2), 103. https://doi.org/10.20527/bipf.v8i2.8493
Mundilarto, M. (2012). Penilaian hasil belajar fisika. UNY Press.
Noprinda, C. T., & Soleh, S. M. (2019). pengembangan lembar kerja peserta didik (lkpd) berbasis higher order thinking skill (hots). Indonesian Journal of Science and Mathematics Education, 2(2), 168–176. https://doi.org/10.24042/ijsme.v2i2.4342
Nurhayati, N., Angraeni, L., & Wahyudi, W. (2019). Pengaruh model problem based learning, kemampuan berpikir kritis terhadap kemampuan berpikir tingkat tinggi. Edusains, 11(1), 12–20.
Riduwan, R. (2012). Skala pengukuran variabel-variabel penelitian. Alfabeta.
Riduwan, R. (2013). Dasar-Dasar Statistika. Alfabeta.
Royantoro, F., Mujasam, M., Yusuf, I., & Widyaningsih, S. W. (2018). Pengaruh Model Problem Based Learning terhadap Higher Order Thinking Skills Peserta Didik. Berkala Ilmiah Pendidikan Fisika, 6(3), 371. https://doi.org/10.20527/bipf.v6i3.5436
Sambite, F. C. ., Mujasam, M., Widyaningsih, S. W., & Yusuf, I. (2019). Penerapan Project Based Learning berbasis Alat Peraga Sederhana untuk Meningkatkan HOTS Peserta Didik. Berkala Ilmiah Pendidikan Fisika, 7(2), 141. https://doi.org/10.20527/bipf.v7i2.6310
Sangpom, W., Suthisung, N., Kongthip, Y., & Inprasitha, M. (2016). Advanced mathematical thinking and students’ mathematical learning: reflection from students’ problem-solving in mathematics classroom. Journal of Education and Learning, 5, 72–82.
Saraswati, P. M. S., & Agustika, G. N. S. (2020). Kemampuan berpikir tingkat tinggi dalam menyelesaikan soal hots mata pelajaran matematika. Jurnal Ilmiah Sekolah Dasar, 4(2). https://doi.org/10.23887/jisd.v4i2.25336
Trisnawati, W. W., & Sari, A. K. (2019). Integrasi keterampilan abad 21 dalam modul sociolinguistics: keterampilan 4c (collaboration, communication, critical thinking, dan creativity). Jurnal Muara Pendidikan, 4(2), 455–466. https://doi.org/10.52060/mp.v4i2.179
Yanti, I. R., Trisna, S., Usmeldi, U., & Ramli, R. (2016). Preliminary research pengembangan modul berbasis problem based instruction pada mata kuliah fisika matematika i di stkip pgri sumatera barat. V, SNF2016-RND-19-SNF2016-RND-22. https://doi.org/10.21009/0305010205
DOI: http://dx.doi.org/10.20527/bipf.v10i1.11914
Article Metrics
Abstract view : 443 timesPDF - 305 times
Refbacks
- There are currently no refbacks.
Indexed by:
The journal has been listed in:
Statistics Counter
1. From August 10, 2016 to present (broken code but the stats is still working)
2. From December 28, 2018 to present (updated stats)
Berkala Ilmiah Pendidikan fisika is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License














