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Showing 1 to 15 of 35 results Save | Export
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Xiang, Lin; Srinivasan, Madhusudan – Journal of College Science Teaching, 2023
Integrating authentic research practices into introductory laboratory courses to prepare tomorrow's scientists has become increasingly prevalent over the past decade. However, an incomplete understanding of the nature of science (NOS) and authentic scientific inquiry (SI) precludes higher-level learning in undergraduate research experiences. In…
Descriptors: Hands on Science, Scientific Principles, Science Laboratories, Large Group Instruction
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Liu, Dan; Duan, Zhuojan – Physics Teacher, 2021
Equilibrium is an essential concept in undergraduate physics curriculum as it integrates Newton's laws and torque. The importance also comes from its wide applications in mechanics and biomechanics. Simulations of Back and Arms are developed mainly for the undergraduates who major in physical therapy and health sciences. They are implemented as…
Descriptors: Scientific Concepts, Scientific Principles, Biomechanics, Mechanics (Physics)
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Allchin, Douglas – Canadian Journal of Science, Mathematics and Technology Education, 2017
The "consensus view" on the nature of science (NOS) is now outmoded. To help frame an enduring alternative, one should attend first to the "why" of NOS education. Functional, or civic, scientific literacy is foundational. Acknowledging a need for consumers and citizens to assess the reliability of scientific claims in personal…
Descriptors: Scientific Principles, Science Education, Educational Assessment, Teaching Methods
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Van Cleave, Jessica – Education Policy Analysis Archives, 2018
In this article, I explore the tension between the current political context in which science needs defending against anti-intellectualism and outright assaults on evidence as a means of decision-making on the one hand and the overzealous scientism that can result from backlash against a perceived lack of rigor in various forms of inquiry. To do…
Descriptors: Scientific Research, Anti Intellectualism, Discourse Analysis, Educational Researchers
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Østergaard, Edvin – Cultural Studies of Science Education, 2015
The question of how to foster rooting in science education points towards a double challenge; efforts to "prevent" (further) uprooting and efforts to "promote" rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the…
Descriptors: Science Education, Phenomenology, Scientific Concepts, Models
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Akerson, Valarie L.; Weiland, Ingrid; Rogers, Meredith Park; Pongsanon, Khemmawaddee; Bilican, Kader – EURASIA Journal of Mathematics, Science & Technology Education, 2014
We explored adaptations to an elementary science methods course to determine how varied contexts could improve elementary preservice teachers' conceptions of NOS as well as their ideas for teaching NOS to elementary students. The contexts were (a) NOS Theme in which the course focused on the teaching of science through the consistent teaching…
Descriptors: Elementary School Science, Methods Courses, Science Instruction, Scientific Principles
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Raubenheimer, Helgard G.; Schmidbaur, Hubert – Journal of Chemical Education, 2014
Probably owing to the prejudice that gold is a metal too noble to be used much in chemistry, the chemistry of this element has developed much later than that of its congeners and neighbors in the periodic table. In fact, before and after the time of alchemists, and up to the 20th century, all chemistry of gold was mainly performed in attempts to…
Descriptors: Chemistry, Investigations, Scientific Concepts, Scientific Methodology
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Lederman, Judith S.; Lederman, Norman G.; Bartos, Stephen A.; Bartels, Selina L.; Meyer, Allison Antink; Schwartz, Renee S. – Journal of Research in Science Teaching, 2014
Helping students develop informed views about scientific inquiry (SI) has been and continues to be a goal of K-12 science education, as evidenced in various reform documents. Nevertheless, research focusing on understandings of SI has taken a perceptible backseat to that which focuses on the "doing" of inquiry. We contend that this is…
Descriptors: Science Education, Measures (Individuals), Inquiry, Educational Change
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Zarnowski, Myra; Turkel, Susan – Children's Literature in Education, 2013
In this article, the authors consider whether children's trade books promote an authentic understanding of the nature of science. They begin by discussing the characteristics of the nature of science and then examine existing research in children's science books for evidence of the visibility of these features. They describe the problems…
Descriptors: Nonfiction, Scientific Principles, Science Education, Barriers
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Maurines, Laurence; Beaufils, Daniel – Science & Education, 2013
Physics and chemistry programs at the secondary school level in France recommend introducing components of the history of science (HS). Emphasis is placed on a "cultural" dimension, which is poorly defined but essentially refers to elements of epistemological nature. Moreover, the few examples of activities based on HS suggested by the…
Descriptors: Physics, Chemistry, Learning Activities, Teaching Methods
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Taylor, Ann T. S. – Biochemistry and Molecular Biology Education, 2013
Most biochemistry, genetics, cell biology, and molecular biology classes have extensive prerequisite or co-requisite requirements, often including introductory chemistry, introductory biology, and organic chemistry coursework. But what is the function of these prerequisites? While it seems logical that a basic understanding of biological and…
Descriptors: Prerequisites, Biochemistry, Genetics, Molecular Biology
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Quigley, Cassie – Cultural Studies of Science Education, 2011
This review explores Meyers and Crawford's "Teaching science as a cultural way of knowing: Merging authentic inquiry, nature of science, and multicultural strategies" by examining how they combine the use of inquiry-based science instruction with multicultural strategies. In this conversation, I point to the need of specific discourse strategies…
Descriptors: Multicultural Education, Scientific Principles, Science Instruction, Inquiry
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Vigeant, Margot; Prince, Michael; Nottis, Katharyn – Chemical Engineering Education, 2011
This study examines the use of inquiry-based instruction to promote the understanding of critical concepts in thermodynamics and heat transfer. Significant research shows that students frequently enter our courses with tightly held misconceptions about the physical world that are not effectively addressed through traditional instruction. Students'…
Descriptors: Science Activities, Thermodynamics, Heat, Chemical Engineering
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Cizdziel, James V. – Journal of Chemical Education, 2011
In this laboratory experiment, students quantitatively determine the concentration of an element (mercury) in an environmental or biological sample while comparing and contrasting the fundamental techniques of atomic absorption spectrometry (AAS) and atomic fluorescence spectrometry (AFS). A mercury analyzer based on sample combustion,…
Descriptors: Science Laboratories, Science Experiments, Spectroscopy, Chemistry
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Takacs, Peter; Ruse, Michael – Science & Education, 2013
The philosophy of biology today is one of the most exciting areas of philosophy. It looks critically across the life sciences, teasing out conceptual issues and difficulties bringing to bear the tools of philosophical analysis to achieve clarification and understanding. This essay surveys work in all of the major directions of research:…
Descriptors: Ecology, Ethics, Evolution, Biology
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