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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 765 results
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Luce, Megan R.; Hsi, Sherry – Science Education, 2015
In efforts to understand and promote long-term interest in science, much work has focused on measuring students' interest in topics of science, typically with surveys. This approach has challenges, as interest in a topic may not necessarily indicate interest in scientific practices and pursuits. An underexplored and perhaps productive way to…
Descriptors: Science Education, Science Interests, Student Interests, Photography
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Bevan, Bronwyn; Gutwill, Joshua P.; Petrich, Mike; Wilkinson, Karen – Science Education, 2015
The Maker Movement has taken the educational field by storm due to its perceived potential as a driver of creativity, excitement, and innovation (Honey & Kanter, [Honey, M., 2013]; Martinez & Stager, [Martin, L., 2013]). Making is promoted as advancing entrepreneurship, developing science, technology, engineering, and mathematics (STEM)…
Descriptors: STEM Education, Creative Thinking, Inquiry, Teaching Methods
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Campanile, Megan F.; Lederman, Norman G.; Kampourakis, Kostas – Science & Education, 2015
The purpose of this study was to analyze seven widely used high school biology textbooks in order to assess the nature of science knowledge (NOS) and scientific inquiry (SI) aspects they, explicitly or implicitly, conveyed in the Mendelian genetics sections. Textbook excerpts that directly and/or fully matched our statements about NOS and SI were…
Descriptors: Genetics, Science Education, Science Education History, High Schools
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Scogin, Stephen C.; Stuessy, Carol L. – Science Education, 2015
Next Generation Science Standards (NGSS) call for integrating knowledge and practice in learning experiences in K-12 science education. "PlantingScience" (PS), an ideal curriculum for use as an NGSS model, is a computer-mediated collaborative learning environment intertwining scientific inquiry, classroom instruction, and online…
Descriptors: Mentors, Electronic Learning, Inquiry, Learner Engagement
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Schoerning, Emily; Hand, Brian; Shelley, Mack; Therrien, William – Science Education, 2015
The Next Generation Science Standards call for the adoption of many aspects of scientific inquiry in the classroom. The ways in which classroom talk and classroom environment change as students and teachers learn to utilize inquiry approaches are underexplored. This study examines the frequency with which linguistic markers related to access and…
Descriptors: Science Instruction, Power Structure, Standards, Inquiry
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Jornet, Alfredo; Roth, Wolff-Michael – Science Education, 2015
The aim of this study is to advance current understanding of the transactional processes that characterize students' sense-making practices when they are confronted with multiple representations of scientific phenomena. Data for the study are derived from a design experiment that involves a technology-rich, inquiry-based sequence of…
Descriptors: Science Instruction, Scientific Concepts, Scientific Principles, Concept Formation
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Van Dijk, Esther M. – Science Education, 2014
This paper is concerned with the conceptualization of pedagogical content knowledge (PCK) for teaching about the nature of science. In contrast to the view that science teachers need to develop a specific "PCK for nature of science," an alternative, more comprehensive notion of PCK for science teaching is suggested. The point of…
Descriptors: Scientific Literacy, Pedagogical Content Knowledge, Scientific Principles, Science Teachers
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Allchin, Douglas; Andersen, Hanne Moller; Nielsen, Keld – Science Education, 2014
Research has now demonstrated that students can learn nature of science concepts variously through student-led investigations, contemporary cases, and historical cases. Here we articulate more precisely the merits, deficits, and context of each approach and begin to profile how to integrate them as complementary methods. Emphasis now needs to…
Descriptors: Teaching Methods, Science Instruction, Inquiry, Integrated Activities
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Salter, Irene Y.; Atkins, Leslie J. – Science Education, 2014
We teach a course for elementary education undergraduates that gives students an opportunity to conduct open-ended scientific inquiry and pursue their own scientific questions in much the same way that practicing research scientists do. In this study, we compared what our students say declaratively about the nature of science (NOS) in surveys and…
Descriptors: Teacher Education, Elementary School Teachers, Undergraduate Students, Student Attitudes
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Allen, Lauren B.; Crowley, Kevin J. – Science Education, 2014
Educators in informal settings can be a key part of the learning experience, yet they are often poorly supported as professionals. This study followed the professional development of museum educators who participated in iterative implementation of a new school trip program focused on climate change. The learner-centered pedagogy, inquiry format,…
Descriptors: Museums, Science Teachers, Faculty Development, Field Trips
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Chen, Sufen; Chang, Wen-Hua; Lai, Chih-Hung; Tsai, Cheng-Yue – Science Education, 2014
The purpose of this project was to investigate the effects of virtual versus physical manipulation using a simulation-based laboratory activity (SBL) and a microcomputer-based laboratory activity (MBL). Both the SBL and the MBL used computers to collect, graph, and analyze data. A major difference was that the MBL allowed the students to…
Descriptors: Science Instruction, Science Laboratories, Computer Uses in Education, Simulation
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Gray, Ron – Science Education, 2014
Inquiry experiences in secondary science classrooms are heavily weighted toward experimentation. We know, however, that many fields of science (e.g., evolutionary biology, cosmology, and paleontology), while they may utilize experiments, are not justified by experimental methodologies. With the focus on experimentation in schools, these fields of…
Descriptors: Science Education, Secondary School Students, Experiments, Inquiry
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Mutanen, Arto – Science & Education, 2014
The paper is a philosophical analysis of experimentation. The philosophical framework of the analysis is the interrogative model of inquiry developed by Hintikka. The basis of the model is explicit and well-formed logic of questions and answers. The framework allows us to formulate a flexible logic of experimentation. In particular, the formulated…
Descriptors: Science Instruction, Science Experiments, Inquiry, Models
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Sato, Kunimasa – Science & Education, 2014
It is well known that the Meno presents the argument called "the paradox of inquiry." This paper has two purposes. First, I analyze the paradox of inquiry and reformulate the argument as the "renewed paradox of inquiry." Second, I clarify that the problem of inquiry posed by this paradox concerns the necessary conditions for a…
Descriptors: Inquiry, Philosophy, Logical Thinking, Science Education
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Kim, Sun Young; Yi, Sang Wook; Cho, Eun Hee – Science & Education, 2014
In this study, we produced a documentary which portrays scientists at work and critically evaluated the use of this film as a teaching tool to help students develop an understanding of the nature of science. The documentary, "Life as a Scientist: People in Love with 'Caenorhabditis elegans,' a Soil Nematode" encompasses the…
Descriptors: Documentaries, Scientists, Science Education, Scientific Principles
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