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de Andrade, Vanessa; Freire, Sofia; Baptista, Mónica – Research in Science Education, 2019
This article describes a system of analysis aimed at characterizing students' scientific explanations. Science education literature and reform documents have been highlighting the importance of scientific explanations for students' conceptual understanding and for their understanding of the nature of scientific knowledge. Nevertheless, and despite…
Descriptors: Science Education, Scientific Concepts, Knowledge Level, Student Attitudes
Bloom, Mark A.; Fuentes, Sarah Quebec – Electronic Journal for Research in Science & Mathematics Education, 2020
While most of the outcomes of the current COVID-19 pandemic are not good, occasionally one can identify a positive outcome from even the worst situations. The Coronavirus outbreak has provided a special opportunity to get a pulse on how well the society understands science and mathematics processes. Social media amplifies the voice of citizens…
Descriptors: Scientific Literacy, Numeracy, Social Media, Scientific Principles
Ingram, Neil R. – School Science Review, 2020
Conrad Hal Waddington (1905--1975) was an English biologist who was especially interested in the big (metaphysical) questions of life. His thinking has become part of the foundation of modern systems biology. This article applies his thinking to middle-years school biology curricula (for ages 11-16), to see if their approach to epistemic questions…
Descriptors: Middle School Students, Biology, Science Curriculum, Secondary School Science
Farmer, Stuart – School Science Review, 2020
Science appears to be coming under increasing pressure in parts of society and the media, with an increase of 'fake news' and less regard for 'experts'. If this is to be combatted it is important that students develop a good understanding of both the big conceptual ideas of science and the nature of science itself. However, the nature of science…
Descriptors: Science Teachers, Knowledge Level, Pedagogical Content Knowledge, Scientific Principles
Jiménez-Liso, Maria Rut; López-Banet, Luisa; Dillon, Justin – Science & Education, 2020
We propose explicit and implicit approaches for the teaching of acid-base chemistry based on research into the history and nature of science (NoS). To support these instructional proposals, we identify four rationales for students to understand acid-base processes: daily life, socio-scientific, curriculum, and history of science. The extensive…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Scientific Concepts
Taber, Keith S. – School Science Review, 2017
This article considers the relationship between belief and learning science. It is argued that belief in science (as a process) needs to be distinguished from belief in particular scientific ideas and knowledge claims. Scientific knowledge is theoretical and provisional--something to be adopted for its utility, not as articles of faith. The…
Descriptors: Scientific Literacy, Misconceptions, Beliefs, Scientific Attitudes
Duncan, Charles Arthur; Bellar, David M. – Strategies: A Journal for Physical and Sport Educators, 2015
Historically, physical education has a stereotypical image as being neither very physical nor educational. NASPE [National Standards for Physical Education] Standard 2 indicates that students in physical education classes should be able to demonstrate understanding and movement concepts, principles, and tactics as they apply to physical activity.…
Descriptors: Physical Education, Teaching Methods, National Standards, Psychomotor Skills
Lederman, Norman G.; Antink, Allison; Bartos, Stephen – Science & Education, 2014
The primary focus of this article is to illustrate how teachers can use contemporary socio-scientific issues to teach students about nature of scientific knowledge as well as address the science subject matter embedded in the issues. The article provides an initial discussion about the various aspects of nature of scientific knowledge that are…
Descriptors: Science and Society, Scientific Principles, Science Instruction, Knowledge Level
Brown, Patrick – Science and Children, 2014
A rich science learning experience not only captures students' attention but also motivates them to investigate and solve problems and investigate how scientists carry out their work. This article describes how secondary science coordinator Patrick Brown's found success teaching students the nature of science by engaging them in…
Descriptors: Science Instruction, Scientific Principles, Hands on Science, Physics
Lederman, Judith; Bartels, Selina; Lederman, Norman; Gnanakkan, Dionysius – Science and Children, 2014
With the emergence of the "Next Generation Science Standards" ("NGSS"; NGSS Lead States 2013), it is apparent that teaching and learning about nature of science (NOS) continues to be an important goal of science education for all K-12 students. With this emphasis on NOS, early childhood teachers are asking how to design…
Descriptors: Science Instruction, Scientific Concepts, Scientific Principles, Elementary School Teachers
Resistance and the Development of Scientific Practice: Designing the Mangle into Science Instruction
Manz, Eve – Cognition and Instruction, 2015
This article addresses how we can develop learning environments that establish a need for scientific practices and provide a context for developing content knowledge through practice. It argues that Pickering's (1995) notion of "The Mangle of Practice" informs these efforts by focusing our attention on how resistance, or push-back from…
Descriptors: Science Process Skills, Knowledge Level, Science Instruction, Elementary School Science
Flener-Lovitt, Charity – Journal of Chemical Education, 2014
A thematic course called "Climate Change: Chemistry and Controversy" was developed for upper-level non-STEM students. This course used the socioscientific context of climate change to teach chemical principles and the nature of science. Students used principles of agnotology (direct study of misinformation) to debunk climate change…
Descriptors: Science Instruction, College Science, Undergraduate Study, Teaching Methods
Clary, Renee; Wandersee, James – Science Scope, 2011
Dinosaurs in the middle school classroom can be exciting. These extinct reptiles are both an exotic subject and familiar to our students. Because students are inherently interested, dinosaurs can serve as an effective portal for the integration of biology, geology, ecology, and the history and nature of science. The field of dinosaur study is…
Descriptors: Middle Schools, Paleontology, Science History, Visualization
Allchin, Douglas – Science Education, 2011
I profile here a prospective method for assessing nature of science (NOS) knowledge, as an alternative to VNOS and similar approaches. Questions about cases in contemporary news and from history probe scientific literacy in context. Scoring targets how "well informed" the analysis is, based on identifying relevant NOS information and interpreting…
Descriptors: Scientific Principles, Scientific Literacy, Teaching Methods, Evaluation Methods
Papayannakos, Dimitris P. – Science & Education, 2008
The structure of David's Bloor argument for the Strong Programme (SP) in Science Studies is criticized from the philosophical perspective of anti-skeptical, scientific realism. The paper transforms the common criticism of SP--that the symmetry principle of SP implies an untenable form of cognitive relativism--into the clear philosophical issue of…
Descriptors: Constructivism (Learning), Criticism, Science Education, Scientific Principles
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