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Treschman, Keith – Teaching Science, 2022
The topic of the seasons is covered in both primary and secondary schools in Australia. It may be difficult for some students to comprehend how the Sun alters its position throughout the year. This article shows how to calculate the changing rising and setting positions of the Sun for one's locality and the extremes of its elevation near noon over…
Descriptors: Science Instruction, Astronomy, Computation, Motion
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Fry, Kym; English, Lyn D. – Mathematics Teacher: Learning and Teaching PK-12, 2023
How might fourth graders address the problem of measuring the size of a leaf? And why might their classroom teachers choose such a shape to measure? One group of fourth-grade students in an urban Australian school were interested in knowing the sizes of leaves on a passionfruit vine growing at their school. The children were excited after a visit…
Descriptors: Grade 4, Urban Schools, Elementary School Students, Measurement
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Christopher E. Jones; Gabriel G. Perrone – Journal of University Teaching and Learning Practice, 2023
Higher education teaching abruptly changed during the COVID-19 pandemic to remote, on-line learning and teaching. The use of on-line communication software to teach became the norm and remains at many institutions. This software contains features, such as the chat, that offer teaching and learning advantages; however, potential benefits can be…
Descriptors: Team Teaching, Electronic Learning, Models, Science Instruction
Alfaiz, Fahad Suliman – ProQuest LLC, 2019
Developing students' creative problem solving skills should be one of the top goals in general education. One teaching model that was developed to increase students' creative problem solving abilities is the Real Engagement in Active Problem Solving (REAPS) model. This model was used as an intervention in classrooms in many studies. However, the…
Descriptors: Program Implementation, Fidelity, Creativity, Problem Solving
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Tytler, Russell; Ferguson, Joseph; White, Peta – Learning: Research and Practice, 2020
Increasingly, learning in science and mathematics is considered in terms of induction into the multimodal language practices of the disciplinary community. A strong strand of research in this tradition has involved students being challenged to invent multimodal language forms, and their ideas refined through structured guidance. Often, however,…
Descriptors: Science Instruction, Mathematics Instruction, Inquiry, Teaching Methods
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Kaur, Tejinder; Blair, David; Moschilla, John; Stannard, Warren; Zadnik, Marjan – Physics Education, 2017
The Einstein-First project aims to change the paradigm of school science teaching through the introduction of modern Einsteinian concepts of space and time, gravity and quanta at an early age. These concepts are rarely taught to school students despite their central importance to modern science and technology. The key to implementing the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Logical Thinking
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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
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Geelan, David – Education Sciences, 2020
There is a long history of philosophical inquiry into the concept of explanation in science, and this work has some implications for the ways in which science teachers, particularly in the physical sciences (physics and chemistry), explain ideas to students. Recent work has outlined a constructivist approach to developing, delivering, and refining…
Descriptors: Science Teachers, Teaching Skills, Science Instruction, Physics
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Kaur, Tejinder; Blair, David; Choudhary, Rahul Kumar; Dua, Yohanes Sudarmo; Foppoli, Alexander; Treagust, David; Zadnik, Marjan – Physics Education, 2020
There is growing interest in the introduction of Einsteinian concepts of space, time, light and gravity across the entire school curriculum. We have developed an educational programme named 'Einstein-First', which focuses on teaching Einsteinian concepts by using simple models and analogies. To test the effectiveness of these models and analogies…
Descriptors: Science Instruction, Physics, Gender Differences, Scientific Concepts
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Teaching Science, 2017
EngQuest, an initiative of Engineers Australia, provides an exciting, non-competitive way for students to participate in free, fun and educational engineering activities involving mathematics, science and technology. This article describes a project designed to teach middle school students how to construct a water catchment system. Water…
Descriptors: Foreign Countries, Science Instruction, STEM Education, Water
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Cooper, Rebecca – Asia-Pacific Journal of Teacher Education, 2019
Research on teacher education, especially on the development of teacher educators, is limited. This paper considers the role of dispositions in the development of pedagogical knowledge (PK) for science teacher educators (STEs), across stages of career. It argues that beliefs and perceptions shift and change along with, but not directly related to,…
Descriptors: Pedagogical Content Knowledge, Teacher Educators, Science Teachers, College Faculty
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Kaur, Tejinder; Blair, David; Moschilla, John; Zadnik, Marjan – Physics Education, 2017
The Einstein-First project approaches the teaching of Einsteinian physics through the use of physical models and analogies. This paper presents an approach to the teaching of quantum physics which begins by emphasising the particle-nature of light through the use of toy projectiles to represent photons. This allows key concepts including the…
Descriptors: Science Instruction, Physics, Scientific Principles, Probability
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Elsworth, Catherine; Li, Barbara T. Y.; Ten, Abilio – Journal of Chemical Education, 2017
In this letter we present an innovative and cost-effective method of constructing crystal structures using Dual Lock fastening adhesive tape with table tennis (ping pong) balls. The use of these fasteners allows the balls to be easily assembled into layers to model various crystal structures and unit cells and then completely disassembled again.…
Descriptors: Hands on Science, Science Activities, Models, Physical Sciences
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Evergreen, Merrin; Cooper, Rebecca; Loughran, John – Teacher Development, 2018
This paper is based on the first author's extensive examination of her teaching and her students' learning in a senior high school Biology classroom at a coeducational K-12 independent college in Victoria, Australia, over a five-year period. Research was guided by the following questions: (1) How can students become more aware of the specific…
Descriptors: Foreign Countries, High School Students, Secondary School Teachers, Secondary School Science
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Kin, Ng Hong; Ling, Tan Aik – Teaching Science, 2016
The concept of specificity of enzyme action can potentially be abstract for some students as they fail to appreciate how the three-dimensional configuration of enzymes and the active sites confer perfect fit for specific substrates. In science text books, the specificity of enzyme-substrate binding is typically likened to the action of a lock and…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Models
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