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Gillies, Robyn M.; Nichols, Kim; Khan, Asaduzzaman – Cambridge Journal of Education, 2015
Teaching students to use and interpret representations in science is critically important if they are to become scientifically literate and learn how to communicate their understandings and learning in science. This study involved 248 students (119 boys and 129 girls) from 26 grade 6 teachers' classes in nine primary schools in Brisbane,…
Descriptors: Elementary School Science, Elementary School Students, Scientific Concepts, Concept Formation
Doering, Aaron; Henrickson, Jeni – Journal of Technology and Teacher Education, 2015
Self-directed, inquiry-based learning opportunities focused on transdisciplinary real-world problem solving have been shown to foster creativity in learners. What tools might we provide classroom teachers to scaffold them and their students through this creative process? This study examines an online informal learning environment and the role the…
Descriptors: Creativity, Inquiry, Independent Study, Informal Education
Cremin, Teresa; Glauert, Esme; Craft, Anna; Compton, Ashley; Stylianidou, Fani – Education 3-13, 2015
In the light of the European Union's interest in creativity and innovation, this paper, drawing on data from the EU project Creative Little Scientists (2011-2014), explores the teaching and learning of science and creativity in Early Years education. The project's conceptual framework, developed from detailed analysis of relevant literatures,…
Descriptors: Science Instruction, Inquiry, Creative Teaching, Creativity
Hanley, Pam; Slavin, Robert; Elliott, Louise – Education Endowment Foundation, 2015
Thinking, Doing, Talking Science (TDTS) is a programme that aims to make science lessons in primary schools more practical, creative and challenging. Teachers are trained in a repertoire of strategies that aim to encourage pupils to use higher order thinking skills. For example, pupils are posed 'Big Questions,' such as 'How do you know that the…
Descriptors: Science Instruction, Elementary School Science, Teaching Methods, Thinking Skills
Moore, J. C.; Baker, J. C.; Franzel, L.; McMahon, D.; Songer, D. – Physics Teacher, 2010
We present a nontrigonometric graphical method for predicting the trajectory of a projectile when the angle and initial velocity are known. Students enrolled in a general education conceptual physics course typically have weak backgrounds in trigonometry, making inaccessible the standard analytical calculation of projectile range. Furthermore,…
Descriptors: Physics, Misconceptions, Motion, Science Instruction
Zion, Michal; Sadeh, Irit – EURASIA Journal of Mathematics, Science & Technology Education, 2010
In examining open inquiry projects among high-school biology students, we found dynamic inquiry performances expressed in two criteria: "changes occurring during inquiry" and "procedural understanding". Characterizing performances in a dynamic open inquiry project can shed light on both the procedural and epistemological…
Descriptors: Student Research, Biology, Inquiry, High Schools
Cervone, Barbara – New Directions for Youth Development, 2010
Boredom and failure combine in a toxic brew that propels too many young people off the graduation path. Research shows that engaged students are more likely to perform well academically, that students who are challenged are less likely to be bored and disengaged, and that high-quality instruction and meaningful activities are key factors in…
Descriptors: Learner Engagement, Academic Achievement, Evaluation, Adolescents
Fontichiaro, Kristin, Comp. – School Library Monthly, 2010
Inquiry does not replace information literacy; rather, it encompasses it. Inquiry-based learning invites school librarians to step into all aspects of instructional planning, from activating prior knowledge straight through to reflection. Libraries pursuing inquiry-based instruction are building on the bedrock of information literacy, not starting…
Descriptors: Inquiry, Active Learning, Information Literacy, Librarians
Cohen, Perrin – New Directions for Teaching and Learning, 2010
Intrinsic to experiential learning is the challenge of empowering students to both reflectively engage with and inquire into ethical issues, while facing time, task, social, and other daily pressures. As designated "learners" in a professional setting, experiential education students typically see themselves as having little authority…
Descriptors: Experiential Learning, Ethics, Reflection, Inquiry
Lustick, David – Journal of Science Teacher Education, 2010
Science education standards place a high priority on promoting the skills and dispositions associated with inquiry at all levels of learning. Yet, the questions teachers employ to foster sustained reasoning are most likely borrowed from a textbook, lab manual, or worksheet. Such generic questions generated for a mass audience, lack authenticity…
Descriptors: Cues, Science Teachers, Science Instruction, Teaching Methods
Jensen, Jamie L. – American Biology Teacher, 2010
I present a learning cycle that explores different biotechnologies using the process of in situ hybridization as a platform. Students are presented with a cyclopic lamb and must use biotechnology to discover the mechanism behind the deformity. Through this activity, students learn about signal transduction and discover the processes of polymerase…
Descriptors: Biotechnology, Science Instruction, Teaching Methods, Genetics
Russo, Joseph; Mattox, Stephen; Kildau, Nicole – Science Scope, 2010
The wealth of geologic data on Hawaiian volcanoes makes them ideal for study by middle school students. In this paper the authors use existing data on the age and location of Hawaiian volcanoes to predict the location of the next Hawaiian volcano and when it will begin to grow on the floor of the Pacific Ocean. An inquiry-based lesson is also…
Descriptors: Physical Geography, Natural Disasters, Middle School Students, Secondary School Science
Beals, Ashlie M.; Krall, Rebecca M. – Science Scope, 2010
The use of inquiry in life science can be particularly daunting because of the additional management and care living systems require. However, there are some low-maintenance organisms that work well in the classroom. One of these is the common fruit fly, "Drosophila melanogaster." Its small size, low cost, easy availability and maintenance, and…
Descriptors: Population Growth, Animal Behavior, Biological Sciences, Inquiry
Callis, Kristine; Henkel, Melissa; Lund, Rachael – Science Scope, 2010
The objective of the termite experiment is to walk students through the process of designing and conducting an experiment while allowing them to use inquiry-based methods to infer why, in this lab, termites follow the line of blue Bic or Paper Mate brand ballpoint pens. This experiment also reinforces the concept of observation versus inference…
Descriptors: Animals, Inquiry, Scientific Attitudes, Science Process Skills
Dickerson, Peg; Gamberg, Maryellen – Science and Children, 2010
Fourth-grade students at Cutchogue East Elementary School in Cutchogue, New York learned about dependence on natural resources for survival on a visit to Downs Farm Preserve at Fort Corchaug. This is a slice of preserved land just eight minutes beyond the classroom walls. Its inhabitants date back to the first hunting and gathering settlers--the…
Descriptors: Water, Natural Resources, Grade 4, Outdoor Education

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