Ethnoscientific Instructional Resources and Practices for Basic Science in Abua/Odual Local Government Area of Rivers State

Rowland M. I., Obafemi D. T. A.

Abstract


The study investigated the Ethnoscientific resources and practices available for the instruction of Basic Science concept of Sound energy in Abua/Odual Local Government Area of Rivers State. The design for this study was descriptive survey design. The population for the study consists of all the 17 Basic Science teachers in the twelve (12) public and three (3) Private Junior Secondary Schools in the Local Government Area. Census technique was used to select all the seventeen (17) Basic Science teachers for the study. The research instrument was a validated researcher-constructed questionnaire titled 'Ethnoscientific Resources and Practices Questionnaire’. Cronbach alpha was used to obtain a reliability coefficient of 0.70 was obtained for the instrument. Mean was used to analyze the data. The study identified ethnoscientific resources and practices for the teaching of sound energy in the study area, such as the use of traditional musical instruments at cultural ceremonies and festivals, as well as the loud sound produced from the gong (Ugelu) to give a signal to people within and outside the community (such as fishing port and farm) when there is emergency or danger. The study thus recommended that teachers should be resourceful and creative enough to identify and take advantage of the ethnoscientific resources and practices in the culture and tradition of the learners for the teaching of science subjects.


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References


Abiam, P. O., Abonyi, O. S., Uganwa, J. O. & Okafor, G. (2016). Effects of ethnomathematics-based instructional approach on primary school pupils’ achievement in Geometry. Journal of Scientific Research and Reports, 9(2), 1-15.

Abonyi, O. S., Achimugu, L. & Njoku, M. I. A. (2014). Innovations in science and technology education: A case for ethnoscience based science classrooms. International Journal of Scientific and Engineering Research, 5(1), 52-56.

Aderonmu, T. S. B. & Adolphus, T. (2021). Thinking through ethnoscience scenarios for Physics teaching: Implication for curriculum implementation. International Journal of Trends in Scientific Research and Development (IJTSRD), 5(2). www.ijtsrd.com

Ajayi, V. O., Achor, E. E. & Agogo, P. (2017). Use of ethnochemistry teaching approach and achievement and retention of senior secondary students in standard mixture separation techniques. International Center for Science, Humanities and Education Research (ICSHER), 3(1), 21-30.

Alim, Sarwi & Subali, B. (2020). Implementation of ethnoscience-based guided inquiry learning on the scientific literacy and the character of elementary school students. Journal of Primary Education, 9(2), 139-147.

https://journal.unnes.ac.id/sju/index.php/jpe/article/view/29189

Asiyah, Sapri, J., Novitasari, N., Saregar, A., Topano, A., Walid, A. & Kusumah, R. G. T. (2021). Construction of ethnoscience-based learning environment material in scientific knowledge. Journal of Physics: Conference Series, 1796, 012034

doi.10.1088/1742-6596/1796/1/012034

Atmojo, S. E., Kurniwati, W. & Muhtarom, T. (2018). Science learning integrated ethnoscience to increase scientific literacy and scientific character. Journal of Physics: Conference Series, 1254, 012033, doi:10.1088/1742-6596/1254/1/012033

Atmojo, S. E., Lukitoaji, B. D. & Muhtarom, T. (2021). Improving science literation and citizen literation through thematic learning based on ethnoscience. Journal of Physics: Conference Series, 1823, 012001. doi:10.1088/1742-6596/1853/012001

Eriba, J. O. & Samuel, R. I. (2018). Challenges affecting the effective teaching and learning of secondary school Basic science and Technology in Nasarawa State, Nigeria. International Journal of Innovative Social and Science Education, 6(2), 71-75.

Fasasi, R. A. (2017). Effects of ethnoscience instruction, school location and parental educational status on learners’ attitude towards science. International Journal of Science Education, 39(5), 548-564.

Fadilah, I., Sari, R. I., Ramadhani, V., Basuki, F. R. & Fitaloka, O. (2019). Ethnoscience study of the application and delivery procession of Adat Melayu Jambi as science learning resources. Scientiae Educata: Jurnal Pendidikan Sains, 8(2), 141-153.

Fisher, N. J. (2009). Identification and examination of physics concepts that students find most difficult. http://www.per-central.org/items/detaikl.cfm?ID=4387

Fitria, M. & Wisudawati, A. W. (2018). The development of ethnoscience-based chemical enrichment book as a science literacy source of students. International Journal of Chemistry Education Research, 2(1), 50-57.

Gunawan, Y. Y., Sawanto & Nurosyid, F. (2019). The analysis of students’ critical thinking skill through ethnoscience instruction integrated on the topic of magnetic field. AIP Conference Proceedings 2194, 020033. https://doi.org/10.1063/1.5139765

Ibe, E. & Nwosu, A. A. (2017). Effects of ethnoscience and traditional laboratory practical on science process skills acquisition of secondary school Biology students in Nigeria. British Journal of Multidisciplinary and Advanced Studies, 1(1), 35-46.

Khoiri, A., Nulngafan, Sunarno, W. & Sajidan (2019). How is students’ creative thinking skills? An ethnoscience learning implementation. Jurnal Ilmah Pendidikan Fisika Al-BiRuNi, 8(2), 153-163. doi:10.24042/jipfalbiruni.0i0.4559

Lestari, N. & Fajar, F. (2016). Physics education based ethnoscience: Literature review. International Conference on Mathematics, Science and Education (ICMSE 2016), 31-34.

NERDC (2012). 9 year Basic Education Curriculum: Basic Science and Technology JSS 1-3. Lagos: NERDC Press.

Nuroso, H., Supriyadi, Sudarmin, S. & Sarwi (2018). Identification of indigenous science in the brick-making process through ethnoscience study. Journal of Physics: Conference Series, 983, 012172. doi.10.1088/1742-6596/983/1/012172

Obafemi, D. T. A. & Onwioduokit, F. A. (2013). Identification of difficult concepts in Senior Secondary School two (SS2) Physics curriculum in Rivers state, Nigeria. Asian Journal of Education and e-learning, 1(5), 317-322.

Osuolale, O. J. (2014). Problems of teaching and learning science in junior secondary schools in Nasarawa State. Journal of Education and Practice, 5(34), 109-118.

Parmin, P. & Fibriana, F. (2019). Prospective teachers’ scientific literacy through ethnoscience learning integrated with the indigenous knowledge of people in the frontier, outermost, and least developed regions. Jurnal Penelitian dan Pembelajaran IPA, 5(2), 142-154. doi:/10.30870/jppi.v5i2.6257

Presmeg, N. C. (1998). Ethnomathematics in teacher education. Journal of Mathematics Teacher Education, 1(3), 317-339. doi:10.1023/A:1009946219294

Rahmawati, Y., Ridwan, A., Nurbaity (2017). Should we learn culture in Chemistry classroom? Integration of ethnochemistry in culturally responsive teaching. AIP Conference Proceedings 1868, 030009. https://doi.org/10.1063/1.4995108

Sholahuddin, A., Hayati, N., Iriani, R., Saadi, P. & Susilowati, E. (2021). Project-based learning on ethnoscience setting to improve students’ scientific literacy. AIP Conference Proceedings 2330, 020051 https://doi:org/10.1063/5.0043571

Sumarni, W. (2018). The influence of ethnoscience-based learning on Chemistry to the Chemistry literacy rate of the prospective teachers. Unnes Science Educational Journal, 7(2), 198-205. http://journal.unnes.ac.id/sju/index.php/usej

Ugwu, A. N. (2018). Effects of ethno-chemistry-based curriculum delivery on students’ interest in Chemistry in Obollo-Afor Education zone of Enugu State. Journal of the Nigerian Academy of Education, 14(2), 129-139.


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