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Dagher, Zoubeida R.; Erduran, Sibel – Canadian Journal of Science, Mathematics and Technology Education, 2017
The purpose of this commentary on Hodson and Wong's (2017, this issue) article is to clarify the merits of the expanded family resemblance approach (FRA) to science education, briefly alluded to in their article, and to discuss the implications of this approach relative to the question of demarcation they raise. In clarifying the merits of the…
Descriptors: Scientific Principles, Science Education, Scientific Concepts, Scientific Methodology
Reid, Grace; Norris, Stephen P. – Cultural Studies of Science Education, 2016
Scientific media education is the ability to draw on a knowledge of the media and science, in order to choose, understand, evaluate, and respond to representations of science across diverse media genres. We begin this manuscript by reviewing research that shows scientific media education is one of the most important content areas that could be…
Descriptors: Media Literacy, Scientific Literacy, Scientific Concepts, Science Instruction
Develaki, Maria – Interchange: A Quarterly Review of Education, 2016
Models and modeling are core elements of scientific methods and consequently also are of key importance for the conception and teaching of scientific methodology. The epistemology of models and its transfer and adaption to nature of science education are not, however, simple themes. We present some conceptual units in which school science models…
Descriptors: Models, Scientific Methodology, Science Instruction, Epistemology
Graham, Nicholas James; Brouillette, Liane – Journal for Learning through the Arts, 2016
The Next Generation Science Standards (NGSS) have brought a stronger emphasis on engineering into K-12 STEM (science, technology, engineering and mathematics) instruction. Introducing the design process used in engineering into science classrooms simulated a dialogue among some educators about adding the arts to the mix. This led to proposals for…
Descriptors: Art Education, STEM Education, Scientific Methodology, Elementary School Science
Jarvinen, Michael Keith; Jarvinen, Lamis Zaher; Sheehan, Danielle N. – Journal of College Science Teaching, 2012
Today's undergraduates are highly engaged in a variety of social media outlets. Given their comfort with technology, we wondered if we could use this phenomenon to teach science-related material. We asked students to use freeware to make a short video with text, images, and music as a way to explain scientific concepts that are traditionally…
Descriptors: Learner Engagement, Video Technology, Scientific Concepts, Experiential Learning
Murcia, Karen – Teaching Science, 2013
Nanotechnology is guided by the assumption that with the ability to shape or re-shape at the molecular level, we could manipulate the physical world. Some speculate that this ability will be the beginning of the next technological revolution. Hence, an aim of secondary science education should be the development of scientifically literate citizens…
Descriptors: Secondary School Students, Student Attitudes, Science Curriculum, Curriculum Development
Ruggirello, Rachel M.; Balcerzak, Phyllis; May, Victoria L.; Blankenship, Robert E. – Biochemistry and Molecular Biology Education, 2012
The process of photosynthesis is central to science curriculum at all levels. This article describes an inquiry-based laboratory investigation developed to explore the impact of light quality on photosynthesis and to connect this process to current research on harvesting solar energy, including bioenergy, artificial photosynthesis, and solar…
Descriptors: Botany, Scientific Research, Learning Experience, Science Teachers
Bills, Patricia Susan – ProQuest LLC, 2013
Science educators regard long-term investigations as one impactful form of teaching science through inquiry in K-12 classrooms. While we have idealized notions of what this work looks like, we have few, if any, descriptive studies about investigations that engage students in sustained, focused work over a period of time longer than a few days or…
Descriptors: Science Teachers, Middle School Teachers, Secondary School Science, Science Education
Harrington, James M.; Gardner, Terrence G.; Amoozegar, Aziz; Andrews, Megan Y.; Rivera, Nelson A.; Duckworth, Owen W. – Natural Sciences Education, 2013
A challenging aspect of educating secondary students is integrating complex scientific concepts related to modern research topics into lesson plans that students can relate to and understand at a basic level. One method of encouraging the achievement of learning outcomes is to use real-world applications and current research to fuel student…
Descriptors: Teaching Methods, Feedback (Response), Student Interests, Learning Modules
Akcay, Hakan; Hand, Brian; Norton-Meier, Lori – School Science Review, 2010
Science writing opportunities are used as a resource to enable students to understand science concepts. This study represents three different writing-to-learn tasks that enable students to learn science and to demonstrate their developing understanding about the human body system. The teacher and students engaged in a variety of science enquiries…
Descriptors: Creative Writing, Human Body, Science Instruction, Science Education
Siddique, Mohammad Nure Alam – Asia-Pacific Forum on Science Learning and Teaching, 2008
This paper presents part of the findings from a comparative study on existing and proposed science curricula of grades IX-X in Bangladesh. It aims to explore relevant research to find out what ideas about science are recommended to include in school science curriculum, and then to compare the existing and proposed curricula in terms of ideas about…
Descriptors: Textbooks, Foreign Countries, Comparative Analysis, Science Curriculum
Dawson, Vaille – Research in Science Education, 2007
The products of modern biotechnology processes such as genetic engineering, DNA testing and cloning will increasingly impact on society. It is essential that young people have a well-developed scientific understanding of biotechnology and associated processes so that they are able to contribute to public debate and make informed personal…
Descriptors: Student Attitudes, Genetics, Engineering, Biotechnology
ANDREEN, JEAN; AND OTHERS – 1964
SCIENCE CONCEPTS IN THE ELEMENTARY SCHOOL CLASSROOMS SHOULD BE BUILT FROM STUDENT EXPERIENCES, NOT MEMORIZED FROM PRINTED MATERIALS. TEACHERS SHOULD BE ALERT AT ALL TIMES AND CONSCIOUSLY ATTEMPT TO SET UP OR CALL ATTENTION TO SITUATIONS PROVIDING OPPORTUNITIES FOR THE USE OF PROBLEM-SOLVING TECHNIQUES. THE FOLLOWING GENERAL AREAS ARE SUGGESTED AS…
Descriptors: Discovery Processes, Grade 3, Problem Solving, Science Curriculum

Ahmed, Maryam – American Biology Teacher, 1996
Describes a project that introduces students to the field of biotechnology and provides them with an understanding of the basic principles and techniques as well as an opportunity to participate in experimental methodology. Presents specific science projects that deal with polymorphism in the lipase gene and the genetic engineering of a lipase…
Descriptors: Biology, Biotechnology, DNA, Genetics

Meyling, Heinz – Science and Education, 1997
Part One presents empirical results of students' epistemological conceptions of laws, hypotheses, theories, and models. These results are discussed in relation to research results from different recent publications. Part Two gives an outline and analysis of a two-year program for teaching epistemology in a physics course. (AIM)
Descriptors: Epistemology, Physics, Science Curriculum, Science Instruction
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