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Burgin, Stephen R.; Sadler, Troy D.; Koroly, Mary Jo – Research in Science Education, 2012
Research apprenticeships for secondary students provide authentic contexts for learning science in which students engage in scientific investigations with practicing scientists in working laboratory groups. Student experiences in these research apprenticeships vary depending on the individual nature of the laboratory in which students have been…
Descriptors: Concept Mapping, Scientific Research, Investigations, Student Attitudes
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Kishbaugh, Tara L. S.; Cessna, Stephen; Horst, S. Jeanne; Leaman, Lori; Flanagan, Toni; Neufeld, Doug Graber; Siderhurst, Matthew – Chemistry Education Research and Practice, 2012
Herein we report the development of an analytic rubric bank to assess non-content learning, namely higher order cognitive skills, the understanding of the nature of science, and effective scientific communication skills in student research projects. Preliminary findings indicate that use of this tool enhances our students' learning in these areas,…
Descriptors: Scoring Rubrics, Thinking Skills, Scientific Principles, Communication Skills
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Nunez, Elvis Enrique; Pringle, Rose M.; Showalter, Kevin Tyler – International Journal of Science Education, 2012
A survey of the literature on evolution instruction provides evidence that teachers' personal views and understandings can shape instructional approaches and content delivered in science classrooms regardless of established science standards. This study is the first to quantify evolutionary worldviews of in-service teachers in the Caribbean,…
Descriptors: Teaching Methods, Standardized Tests, Evolution, Biology
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Chan, Kit Yu Karen; Yang, Sylvia; Maliska, Max E.; Grunbaum, Daniel – American Biology Teacher, 2012
The National Science Education Standards have highlighted the importance of active learning and reflection for contemporary scientific methods in K-12 classrooms, including the use of models. Computer modeling and visualization are tools that researchers employ in their scientific inquiry process, and often computer models are used in…
Descriptors: Thinking Skills, Active Learning, Science Activities, Scientific Principles
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Michael, Joel; McFarland, Jenny – Advances in Physiology Education, 2011
Physiology faculty members at a wide range of institutions (2-yr colleges to medical schools) were surveyed to determine what core principles of physiology they want their students to understand. From the results of the first survey, 15 core principles were described. In a second survey, respondents were asked to rank order these 15 core…
Descriptors: Medical Schools, Physiology, College Faculty, Teacher Surveys
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Scarcella, Joe; Wallace, Art – Tech Directions, 2011
Gliders and sailplanes provide a great launching platform for teaching about technology and scientific principles. Soaring is technological innovation in action, using earth's natural resources for energy and endurance during flight. This article focuses on the basics of soaring, which educators can use to increase excitement and interest in the…
Descriptors: Scientific Principles, Student Interests, Natural Resources, Technology Education
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Kipnis, Nahum – Science & Education, 2011
This paper analyses the real origin and nature of scientific errors against claims of science critics, by examining a number of examples from the history of electricity and optics. This analysis leads to a conclusion that errors are a natural and unavoidable part of scientific process. If made available to students, through their science teachers,…
Descriptors: Optics, Science Teachers, Science Education, Energy
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Domps, A.; Roques-Carmes, T. – European Journal of Physics, 2011
We present a consistent series of activities, including experiments and basic computational studies, investigating the shape and optical properties of water drops in connection with novel technological devices. Most of the work can be carried out with simple teaching equipment and is well suited to undergraduate students. Firstly, we show how the…
Descriptors: Undergraduate Students, Optics, Teaching Methods, Science Instruction
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Vhurumuku, Elaosi – Chemistry Education Research and Practice, 2011
This quantitative study investigated the relationship between Chemistry students' scientific epistemologies and their perceptions of the nature of laboratory inquiry. Seventy-two Advanced Level Chemistry students were surveyed. The students were sampled from twelve schools in three of Zimbabwe's nine administrative provinces. Students' scientific…
Descriptors: Student Attitudes, Chemistry, Measures (Individuals), Laboratories
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Cid-Vidal, Xabier; Cid, Ramon – Physics Education, 2011
Proton beams have been colliding at 7 TeV in the Large Hadron Collider (LHC) since 30 March 2010, meaning that the LHC research programme is underway. Particle physicists around the world are looking forward to using the data from these collisions, as the LHC is running at an energy three and a half times higher than previously achieved at any…
Descriptors: Physics, Astronomy, Science Instruction, Energy
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Akerson, Valarie L.; Buck, Gayle A.; Donnelly, Lisa A.; Nargund-Joshi, Vanashri; Weiland, Ingrid S. – Journal of Science Education and Technology, 2011
Though research has shown that students do not have adequate understandings of nature of science (NOS) by the time they exit high school, there is also evidence that they have not received NOS instruction that would enable them to develop such understandings. How early is "too early" to teach and learn NOS? Are students, particularly young…
Descriptors: Evidence, Childrens Literature, Scientific Principles, Young Children
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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
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Schultz, Jeremy R.; Simpson, Steven; Elfessi, Abdulaziz M. – Journal of Environmental Education, 2011
This study is a comparative analysis of the environmental philosophies of college undergraduates enrolled in a Midwestern university. Two courses were used for the research, one from a recreation management curriculum and the other from environmental studies. The study utilized a survey instrument called the Environmental Action and Philosophy…
Descriptors: Environmental Education, Comparative Analysis, Recreation, Undergraduate Students
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Savran-Gencer, Ayse – EURASIA Journal of Mathematics, Science & Technology Education, 2014
Vee diagrams have been a metacognitive tool to help in learning the nature and structure of knowledge by reflecting on the scientific process and making knowledge much more explicit to learners during the practical work. This study aimed to assess pre-service science teachers' understanding some aspects of NOS by analyzing their reflections on the…
Descriptors: Biology, Preservice Teacher Education, Preservice Teachers, Knowledge Level
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Chen, Ying-Chih – Teaching Science, 2013
Writing for an audience different from teachers motivates students to translate their existing knowledge into audience-appropriate language, in which students explain, elaborate, and integrate their understanding of science concepts using more than just the technical language of the subject. Several studies also have found that students can…
Descriptors: Student Writing Models, Student Motivation, Persuasive Discourse, Science Activities
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