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Amy Strachan; Marnie Corcoran – Teaching Science, 2025
Science knowledge is deeply intertwined with human values, ethics and societal needs. While science is often perceived as value-neutral, the authors argue that the intertwined nature of science and values can be modelled from the early stages of education. This article shares examples of how individual, collective, and planetary values can shape…
Descriptors: Well Being, Values, Inquiry, Active Learning
Bellocchi, Alberto; Davis, James; Mills, Reece; Arthars, Natasha; Appanna, Subhashni – Teaching Science, 2022
Science curriculum and pedagogy offer ideal avenues for teaching young people the critical thinking skills they need to live in a post-truth world. Drawing on the theory of epistemic cognition, we present a selection of research-based pedagogies that have been shown to be effective in developing school students' understanding of knowledge and how…
Descriptors: Foreign Countries, Science Education, Science Instruction, Teaching Methods
Dale, Keith; Dale, Stephen G. – Teaching Science, 2018
The Australian Curriculum (n.d.) describes chemistry as having three interrelated strands, Science Inquiry Skills, Science as a Human Endeavour and Science Understanding. It also states "... the three strands of the Australian Curriculum: Science should be taught in an integrated way". This article will explore a model for integrating…
Descriptors: Foreign Countries, Science Instruction, Secondary School Science, Chemistry
Low, David; Wilson, Kate – Teaching Science, 2017
On entry to university, high-achieving physics students from all across Australia struggle to identify Newton's third law force pairs. In particular, less than one in ten can correctly identify the Newton's third law reaction pair to the weight of (gravitational force acting on) an object. Most students incorrectly identify the normal force on the…
Descriptors: Misconceptions, Scientific Concepts, Scientific Principles, Physics
Koul, Anjni – Teaching Science, 2017
This article presents an instructional strategy called Premise-Reasoning- Outcome (PRO) designed to support students in the construction of scientific explanations. Informed by the philosophy of science and linguistic studies of science, the PRO strategy involves identifying three components of a scientific explanation: (i) premise--an accepted…
Descriptors: Educational Strategies, Science Instruction, Science Education, Scientific Concepts

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