Alternative approaches to practical work in a biology classroom – meeting the needs of our students

Elisabeth Endah Kusuma Astuti, Syakti Perdana Sriyansyah, Jeffrey DC Barrera

Abstract

Most science teachers regard practical work as an essential requirement for science teaching. There is, however, research-based evidence suggesting that how practical work might best be assessed and carried out in high school science was still ineffective and controversial. Here, the conceptual and procedural knowledge of 110 secondary students as they carried out the practical work in science courses are explored. Regardless of the amount and details of prior instruction that the students get, the descriptive analysis method was used to investigate the extent to which students at the secondary level can both explain biological concepts and perform practical procedures after participating in practical work. A total of 30 open-ended questions were given to students after completing four practical works on the topics of cells, food testing, photosynthesis, and urine testing. Students performed slightly better in procedural knowledge (65) compared to conceptual knowledge (64), with both scores out of 100. The results thus far are consistent with findings from previous studies, which indicate that practical work lacks emphasis on the minds-on aspects. It also shows that procedural knowledge, which is not currently, summatively assessed in Indonesian school science, has not been fully mastered by students even after carrying out practical work. To address this issue, the alternative to a practical test as an indirect assessment of practical skills (IAPS) from England has been adapted to the assessment of practical work in an Indonesian classroom setting. The considerations and limitations are discussed.

References

Abrahams, I. (2009). Does practical work really motivate? A study of the effective value of practical work in secondary school science. International Journal of Science Education, 31(17), 2335-2353. https://doi.org/10.1080/09500690802342836
Abrahams, I., & Millar, R. (2008). Does practical work really work? A study of the effectiveness of practical work as a teaching and learning method in school science. International Journal of Science Education, 30, 1945-1969. https://doi.org/10.1080/09500690701749305
Abrahams, I., & Reiss, M. J. (2012). Practical work: Its effectiveness in primary and secondary schools in England. Journal of Research in Science Teaching, 49(8), 1035-1055.
Abrahams, I., & Reiss, M. J. (2015). The assessment of practical skills. School Science Review, 96(357), 40-44.
Adey, P., & Shayer, M. (2016). Really raising standards: Cognitive intervention and academic achievement. London: Routledge.
Buggé, D. (2023). Improving scientific abilities through lab report revision in a high school investigative science learning environment classroom. Physical Review Physics Education Research, 19(2), 020166. https://doi.org/10.1103/PhysRevPhysEducRes.19.020166
Coletta, V. (2014). Thinking in physics. New York: Pearson.
Hoehn, J. R., & Lewandowski, H. J. (2020). Framework of goals for writing in physics lab classes. Physical Review Physics Education Research, 16(1), 010125.
Holmes, N. G., Olsen, J., Thomas, J. L., & Wieman, C. E. (2017). Value added or misattributed? A multi-institution study on the educational benefit of labs for reinforcing physics content. Physical Review Physics Education Research, 13(1), 020103-1 – 020103-12. https://doi.org/10.1103/PhysRevPhysEducRes.13.010129
Hudson, D. (1996). Laboratory work as scientific method: Three decades of confusion and distortion. Journal of Curriculum Studies, 28(2), 115-135. https://doi.org/10.1080/0022027980280201
Lemons, D. S. (2021). Focused writing in the introductory physics laboratory. American Journal of Physics, 89(10), 907.
Millar, R., & Abrahams, I. (2009). Practical work: Making it more effective. School Science Review, 91(334), 59-64.
Ngozi, E. L. E. (2012). Alternative to practical physics? A wonderful guide to preparing for lower level. California: CreateSpace Independent Publishing Platform.
Osborne, J. (2015). Practical work in science: Misunderstood and badly used? School Science Review, 96(357), 16-24.
Sturman, L., Ruddock, G., Burge, B., Styles, B., Lin, Y., & Vappula, H. (2008). England’s achievement in TIMSS 2007 national report for England. Slough, England: NFER.
Thompson, K. L., Kuchera, A. N., & Yukich, J. N. (2021). Teaching college writing from a physicist’s perspective. American Journal of Physics, 89(1), 61–66.
Wieman, C., & Holmes, N. G. (2015). Measuring the impact of an instructional laboratory on the learning of introductory physics. American Journal of Physics, 83(11), 972 – 978. https://doi.org/10.1119/1.4931717
Woodley, E. (2009). Practical work in school science – Why is it important? School Science Review, 91(335), 49-51.

Authors

Elisabeth Endah Kusuma Astuti
elisabeth.endah@globalprestasi.sch.id (Primary Contact)
Syakti Perdana Sriyansyah
Jeffrey DC Barrera
Astuti, E. E. K., Sriyansyah, S. P., & Barrera, J. D. (2024). Alternative approaches to practical work in a biology classroom – meeting the needs of our students. Journal of Environment and Sustainability Education, 2(1), 6–11. https://doi.org/10.62672/joease.v2i1.13

Article Details