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Orit Ben Zvi Assaraf; Vaille Dawson; Efrat Eilam; Tuba Gokpinar; Daphne Goldman; Nofar Naugauker; Gusti Agung Paramitha Eka Putri; Agung Wijaya Subiantoro; Sakari Tolppanen; Peta White; Helen Widdop Quinton; Justin Dillon – International Journal of Science Education, 2025
Climate change (CC) is the most significant global issue facing humanity, yet research addressing the perspectives of the key players influential in developing and implementing school-based CC curricula at a cross-country national level is scarce. This study examined the perceptions of policymakers, teacher professional development providers and…
Descriptors: Foreign Countries, Climate, Conservation (Environment), Conservation Education
Robyn Yucel – Teaching in Higher Education, 2025
Social realist theorising about curriculum and social justice in higher education has emphasised the importance of providing equity of epistemic access to powerful knowledge. However, there has been little discussion about what constitutes powerful knowledge and how students can use it for social good. In the science disciplines, the traditional…
Descriptors: Undergraduate Students, Social Responsibility, Science Curriculum, Scientific Literacy
Mahy, Blue; Wallace, Maria F. G. – Cultural Studies of Science Education, 2022
School science curricula habitually encourages students to develop science knowledge alongside 'ethical understanding', the moral theory of right and wrong. Drawing from the ideas of Karen Barad, Donna Haraway and Rosi Braidotti, this paper critically examines the 'science-ethics nexus' in Australian secondary schooling. In doing so, it offers a…
Descriptors: Foreign Countries, Science Education, Secondary School Science, Ethics
Fensham, Peter J. – Research in Science Education, 2022
Science in schooling has for the first time been recently considered as a verified whole for the 10 or 12 of its compulsory years, rather than for a limited sector of schooling or for a particular group of students. This has also been occurring as part of a wider review and plan for the whole curriculum of schooling. A framework has been provided…
Descriptors: Science Instruction, Science Curriculum, National Curriculum, Comparative Education
Smith, Dorothy V.; Mulhall, Pamela J.; Hart, Christina E.; Gunstone, Richard F. – Research in Science Education, 2020
Students learn more than science knowledge in a science classroom; they also acquire important messages about the purposes and contexts of science. Roberts (2011) calls these messages a companion story. In this article, we present a case study of high-profile Australian contemporary scientists to argue that there is a need to broaden the range of…
Descriptors: Scientists, Science Education, Foreign Countries, Scientific Research
Watson, Jane; Wright, Suzie; Fitzallen, Noleine; Kelly, Ben – Mathematics Education Research Journal, 2023
Integrated STEM activities are espoused as appropriate for enhancing student learning in relation to statistical concepts; however, a greater understanding of the way in which students' ideas about those concepts develop is needed to maximise the learning potential offered by engagement in STEM activities. For this study, plant growth was chosen…
Descriptors: STEM Education, Plants (Botany), Science Curriculum, Foreign Countries
James Deehan; Amy MacDonald – International Journal of Science Education, 2024
As a myriad of student-centred practices in primary science education have been established as valuable, effective cornerstones of teachers' repertoires, there is now space to further consider student choice in science education. This paper seeks to examine the role of student choice in primary science education by exploring the relationship…
Descriptors: Elementary School Teachers, Science Instruction, Teaching Methods, Foreign Countries
Louise Sutherland; Lina Markauskaite; Ken Cruickshank – Professional Development in Education, 2023
It is difficult to identify direct causal relationships between school-based professional learning initiatives and changes in the participating teachers' competencies or their students' learning outcomes. This paper contributes a novel approach to examining the impact of such school-based professional learning by integrating the constructs of…
Descriptors: Curriculum Development, Faculty Development, Educational Cooperation, Science Curriculum
Heather McMaster – Australian Primary Mathematics Classroom, 2023
According to the author, the "Australian Curriculum: Mathematics (AC:M) requires primary school students to measure the attributes of angle, time, temperature, length, area, capacity and mass. This article outlines some misconceptions held by primary school students which appear to stem from them not understanding terminology concerning the…
Descriptors: Foreign Countries, Mathematical Concepts, Misconceptions, Geometry
Felicity McLure; Mihye Won; David F. Treagust – Journal of Science Teacher Education, 2024
Developing students' creativity is an important educational goal in many countries. The Australian Curriculum Authority has mandated that all teachers teach creative thinking across all subjects and grades. However, after more than 10 years working within this mandate, how do science teachers see their role in promoting creativity in the…
Descriptors: Foreign Countries, Science Teachers, Science Instruction, Creative Thinking
Saeed Salimpour; Michael Fitzgerald; Robert Hollow – Physical Review Physics Education Research, 2024
Over the years, there have been various calls to increase and better represent astronomy in curricula. This is motivated by views within the astronomy and astronomy education communities that the awe, wonder, and interdisciplinary nature of astronomy has the potential to engage students in STEM across disciplines. Reviews of curricula have shown…
Descriptors: Astronomy, Physics, Science Instruction, Foreign Countries
Skamp, Keith; Green, Jodie – Teaching Science, 2022
This paper, the second in a series of three, explores the representation of Earth System Science (ESS) in the Australian Curriculum (ACARA, 2018a)) through the Cross Curriculum Priority area of Sustainability and the Australian Curriculum: Science (F-12), with a focus on F-10. Part I (in Teaching Science, 68.1) overviewed the current…
Descriptors: Foreign Countries, Earth Science, Science Curriculum, Sustainability
Preston, Christine; Johnstone, John – Teaching Science, 2022
In this article, we present some practical tips primary teachers might use to help their students understand adaptations. We also aim to raise awareness of the learning progression towards understanding one of the big ideas of science. A key message is the role that language plays in presenting scientifically accurate ideas about adaptations.
Descriptors: Elementary School Science, Elementary School Teachers, Science Instruction, Language Usage
Suzanne Estaphan; Glenn D. Wadley; Gabrielle Todd; Michelle Towstoless; Deanne H. Hryciw; Louise Lexis; Alan Hayes; Kathy Tangalakis – Advances in Physiology Education, 2023
A national Task Force of 25 Australian physiology educators used the Delphi protocol to develop seven physiology core concepts that were agreed to nationally. The aim of the current study was to unpack the "physiological adaptation" core concept with the descriptor "organisms adjust and adapt to acute and chronic changes in the…
Descriptors: Physiology, Scientific Concepts, Higher Education, Foreign Countries
Léonie J. Rennie – Teaching Science, 2024
The Australian Curriculum Science has "Patterns, Order and Organisation" as one of its six Key Ideas. In the biological sciences, the structural patterns revealed by observing living things are used to order and organise them in a hierarchical system of binomial nomenclature, in which living things have a generic name and a specific…
Descriptors: Science Instruction, Teaching Methods, Taxonomy, Zoology