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Peters-Burton, Erin E. – Science & Education, 2015
The purpose of this study was to describe connections among students' views of nature of science in relation to the goals of a curriculum delivered in a unique setting, one where a researcher and two teachers collaborated to develop a course devoted to teaching students about how knowledge is built in science. Students proceeded through a cycle of…
Descriptors: Scientific Principles, Scientific Attitudes, Student Attitudes, Science Curriculum
Khishfe, Rola – International Journal of Science Education, 2015
Having the learning and retention of science content and skills as a goal of scientific literacy, it is significant to study the issue of retention as it relates to teaching and learning about nature of science (NOS). Then, the purpose of this study was to investigate the development of NOS understandings of students, and the retention of these…
Descriptors: Science Education, Science Process Skills, Scientific Principles, Scientific Literacy
Meyer, Xenia S.; Crawford, Barbara A. – Science Education, 2015
This study investigated how student participation in an authentic scientific investigation may shape underrepresented students' views of science and support students in learning science. The research centered on the instructional approach used in a fifth-grade classroom to engage English language learning students from Latino backgrounds in a…
Descriptors: Hispanic American Students, Inquiry, Active Learning, Science Instruction
Bang, EunJin – International Electronic Journal of Elementary Education, 2013
This study explores the impact of a semester-long science methods course examining pre-service elementary teachers' views on the nature of science (NOS). Also examined were NOS characteristics that pre-service teachers incorporated into their science lesson plans and peer teachings, during the course. Data used for this study were obtained from 21…
Descriptors: Preservice Teachers, Student Attitudes, Scientific Principles, Interviews
School Science Review, 2013
Experimental and investigative work has been an integral element in the teaching of science in schools for many years. Although students have always been taught to work safely, there is now a more general requirement that they will be taught about health and safety and how it should be implemented. That is, they must understand something of the…
Descriptors: Health Education, Safety Education, Scientific Methodology, Scientific Principles
Vazquez-Alonso, Angel; Garcia-Carmona, Antonio; Manassero-Mas, Maria Antonia; Bennassar-Roig, Antoni – Science & Education, 2013
This study analyzes the beliefs about science-technology-society, and other Nature of Science (NOS) themes, of a large sample (613) of Spanish pre- and in-service secondary education teachers through their responses to 30 items of the Questionnaire of Opinions on Science, Technology and Society. The data were processed by means of a multiple…
Descriptors: Science Instruction, Science Teachers, Teacher Attitudes, Scientific Principles
Cessna, Stephen; Neufeld, Douglas Graber; Horst, S. Jeanne – Natural Sciences Education, 2013
Claims of the (non-)sustainability of a given agricultural practice generally hinge on scientific evidence and the reliability of that evidence, or at least the perception of its reliability. Advocates of sustainable agriculture may dismiss science as purely subjective, or at the other extreme, may inappropriately elevate scientific findings to…
Descriptors: Teaching Methods, Agriculture, Reflection, Scientific Methodology
Ribeiro, M. Gabriela T. C.; Machado, Adelio A. S. C. – Journal of Chemical Education, 2013
Two new semiquantitative green chemistry metrics, the green circle and the green matrix, have been developed for quick assessment of the greenness of a chemical reaction or process, even without performing the experiment from a protocol if enough detail is provided in it. The evaluation is based on the 12 principles of green chemistry. The…
Descriptors: Science Instruction, College Science, Undergraduate Study, Secondary School Science
Griffard, Phyllis Baudoin; Mosleh, Tayseer; Kubba, Saad – CBE - Life Sciences Education, 2013
The leap from science student to scientist involves recognizing that science is a tentative, evolving body of knowledge that is socially constructed and culturally influenced; this is known as The Nature of Science (NOS). The aim of this study was to document NOS growth in first-year premedical students who participated in a science book club as a…
Descriptors: Content Analysis, Clubs, Interviews, Scientists
Svoboda, Julia; Passmore, Cynthia – Science & Education, 2013
Modeling, like inquiry more generally, is not a single method, but rather a complex suite of strategies. Philosophers of biology, citing the diverse aims, interests, and disciplinary cultures of biologists, argue that modeling is best understood in the context of its epistemic aims and cognitive payoffs. In the science education literature,…
Descriptors: Biology, Models, Science Education, Educational Strategies
Alaimo, Peter J.; Langenhan, Joseph M.; Suydam, Ian T. – Journal of Chemical Education, 2014
Many traditional organic chemistry lab courses do not adequately help students to develop the professional skills required for creative, independent work. The overarching goal of the new organic chemistry lab series at Seattle University is to teach undergraduates to think, perform, and behave more like professional scientists. The conversion of…
Descriptors: Undergraduate Students, Organic Chemistry, Alignment (Education), Science Process Skills
Williams, Cody Tyler; Rudge, David Wÿss – Science & Education, 2016
Science education researchers have long advocated the central role of the nature of science (NOS) for our understanding of scientific literacy. NOS is often interpreted narrowly to refer to a host of epistemological issues associated with the process of science and the limitations of scientific knowledge. Despite its importance, practitioners and…
Descriptors: Science History, Genetics, Scientific Principles, Science Instruction
Humbert, Richard – Physics Teacher, 2010
A force acting on just part of an extended object (either a solid or a volume of a liquid) can cause all of it to move. That motion is due to the transmission of the force through the object by its material. This paper discusses how the force is distributed to all of the object by a gradient of stress or pressure in it, which creates the local…
Descriptors: Physics, Science Instruction, Motion, Scientific Principles
Wysession, Michael E.; LaDue, Nicole; Budd, David A.; Campbell, Karen; Conklin, Martha; Kappel, Ellen; Lewis, Gary; Raynolds, Robert; Ridky, Robert W.; Ross, Robert M.; Taber, John; Tewksbury, Barbara; Tuddenham, Peter – Journal of Geoscience Education, 2012
The 21st century will be defined by challenges such as understanding and preparing for climate change and ensuring the availability of resources such as water and energy, which are issues deeply rooted in Earth science. Understanding Earth science concepts is critical for humanity to successfully respond to these challenges and thrive in the…
Descriptors: Scientific Literacy, Scientific Principles, Earth Science, Scientific Concepts
Burton, Bill – Science and Children, 2012
With the new focus on Science, Technology, Engineering, and Math (STEM) education, it's important to keep an open mind about incorporating technology into science lessons. In many cases, lessons that incorporate technology are not about the technology itself. Rather, the technology serves as a tool to enhance the lesson or add a new dimension to…
Descriptors: Grade 1, Motion, Technology Integration, Educational Technology

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