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Yasin, Ruhizan Mohammad; Amin, Latifah; Hin, Kok Kean – Teaching Science, 2018
Research related to the teaching and learning of 21st century biotechnology in additional science in Malaysia is seldom conducted. This study was carried out to find out the problems teachers and students face in biotechnology teaching and learning, and the appropriateness of the inclusion of 21st century skills, namely digital-era literacy skill,…
Descriptors: Science Instruction, Secondary School Science, Biotechnology, Foreign Countries
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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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Tang, Kok-Sing – Teaching Science, 2015
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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Davis, James – Teaching Science, 2013
This paper is a qualitative, practice based study describing the use of the Focus-Action-Reflection (FAR) Guide (Harrison & Treagust, 2000) to address the shortcomings of a pedagogical analogical model in Year 10 Science. The aim of this paper is to present my experience of the FAR Guide in relation to an analogical model that gave rise to…
Descriptors: Grade 10, Qualitative Research, Science Instruction, Teaching Experience
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Hume, Anne – Teaching Science, 2009
Scientific literacy goals feature strongly in the rhetoric of most forward-looking science curricula. Many science educators believe that a key means of attaining these goals is through the engagement of students in "authentic scientific inquiry". For students to experience such learning it is critical that teachers understand and appreciate what…
Descriptors: Scientific Literacy, Science Teachers, Pedagogical Content Knowledge, Science Education
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Ng, Wan – Teaching Science, 2009
Capturing students' interest in science at the junior levels is crucial to not only improving the uptake of science at senior levels but to promoting science literacy in all students in order to prepare them for a society that is very science and technologically driven. This paper presents nanotechnology as an emerging science that is both factual…
Descriptors: Science Interests, Scientific Literacy, Middle School Students, Student Motivation
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Bauer, Adriana – Teaching Science, 2009
This article evaluates three online educational resources on the Queensland Museum website in terms of their use of ICTs in science education; how they relate to the Queensland Middle School Science Curriculum and the Senior Biology, Marine Studies, Science 21 syllabuses; their visual appeal and level of student engagement; the appropriateness of…
Descriptors: Electronic Learning, Museums, Scientific Literacy, Science Education
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Hackling, Mark W. – Teaching Science, 2009
A number of reports have argued that secondary science education needs to be more inquiry oriented and involve authentic and practical investigations to develop scientific literacy and better engage students in learning science. Inquiry-oriented approaches, such as those advocated in the new science national curriculum, require that teachers have…
Descriptors: Technical Support, Secondary Schools, Scientific Literacy, Science Education
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Venville, Grady – Teaching Science, 2008
In May 2007 an issue of the "Australian Education Review" was released reporting on the state of science education in Australia. The report argued that we are in the advanced stages of a crisis in school science that threatens the future of Australia as a technologically advanced nation, and we need to change the way we think about the…
Descriptors: Foreign Countries, Science Education, Teaching Methods, Enrollment