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Blackburn, J. Joey; Robinson, J. Shane; Kacal, Amanda – Journal of Agricultural Education, 2015
The purpose of this exploratory, experimental study was to determine the effects that the type of reflection-in-action and students' cognitive style had on content knowledge of preservice agriculture teachers (N = 57) at Oklahoma State University. Students' cognitive style was assessed using Kirton's Adaptation-Innovation Inventory (KAI). Students…
Descriptors: Reflection, Cognitive Style, Creativity Tests, Problem Solving
James, Abigail Norfleet; Allison, Sandra Boyd; McKenzie, Caitlin Zimmerman – Corwin, 2011
If you're tired of repeating yourself to students who aren't listening, try a little less talk and a lot more action. The authors follow the best-selling "Teaching the Male Brain and Teaching the Female Brain" with this ready-to-use collection of mathematics, language arts, science, and classroom management strategies. Designed for active,…
Descriptors: Learner Engagement, Classroom Techniques, Cognitive Style, Lesson Plans
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Ogu, Uchenna; Schmidt, Suzie Reynard – Young Children, 2009
The authors demonstrate how to tailor curriculum to support the varied interests, abilities, and talents of the children in a kindergarten class. Through words and photographs, they describe an in-depth study of rocks and sand, a topic of great interest to the children. The teachers posed open-ended questions that fostered high-level discussions.…
Descriptors: Learning Activities, Childhood Interests, Prior Learning, Kindergarten
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Chin, Christine; Brown, David E. – Research in Science Education, 2000
Correlates the kinds of strategies associated with a deep approach to learning science. Analyzes the interactions of two groups of grade 8 students while they were engaged in hands-on science activities during instruction in a chemistry unit. Focuses on two students who showed a deep approach to learning. (Contains 47 references.) (Author/YDS)
Descriptors: Chemistry, Cognitive Style, Concept Formation, Epistemology
Harpole, Sandra H. – 1987
Some researchers have argued that it is important to match teaching styles with students' learning styles, although a relatively small amount of research has been done on learning styles in science. This study focused on the differences between male and female secondary school chemistry students in an effort to determine the relationship of gender…
Descriptors: Academic Achievement, Chemistry, Classroom Communication, Cognitive Style
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Hong, Jon-Chao; And Others – Scientia Paedagogica Experimentalis, 1995
This study examined relationships between learning style and computer-assisted discovery learning. Secondary students used computer-assisted instruction (CAI) to learn biology under three discovery learning circumstances. The main factor affecting the effectiveness of learning was students' initial acquisition of biology. Learning style and type…
Descriptors: Biology, Cognitive Style, Computer Assisted Instruction, Discovery Learning
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Gabel, Dorothy; And Others – Journal of Research in Science Teaching, 1987
Reports on a study intended to determine the science education research interests of elementary teachers and to examine the data according to certain demographic variables. Results indicate that hands-on experience, science content, cognitive development and learning styles, problem solving, and teaching strategies were the top five research…
Descriptors: Cognitive Development, Cognitive Style, Demography, Elementary Education
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Smedley, Leslie C., Jr. – Journal of Chemical Education, 1987
Reports on a study designed to provide a profile of the learning styles of members of the American Chemical Society. Indicates that chemists tend to be more alike than different in their approach to learning. Suggests that chemists tend to be convergers preferring active experimentation more than reflective observation. (TW)
Descriptors: Adult Education, Chemical Industry, Chemistry, Cognitive Processes
Stice, James E. – Engineering Education, 1987
Describes the learning style inventory and learning cycle developed by David Kolb. Discusses the learning cycle's four stages as concrete experience, reflective observation, abstract conceptualization, and active experimentation. Offers an example from a chemical engineering class in which Kolb's ideas are used in an effort to improve instruction.…
Descriptors: Chemical Engineering, Cognitive Style, College Science, Engineering Education
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Screen, P. – Physics Education, 1988
Describes the cyclical nature of a problem-solving sequence produced from observing children involved in the process. Discusses the generic qualities of science: (1) observing; (2) inferring; (3) classifying; (4) predicting; (5) controlling variables; and (6) hypothesizing. Explains the processes in use and advantages of a process-led course. (RT)
Descriptors: Basic Skills, Cognitive Development, Cognitive Processes, Cognitive Style
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Morgan, J. Mark – American Biology Teacher, 1992
This study used a 2-by-4 factorial design crossing the amount of information about snakes with the level of involvement students had with live specimens to evaluate the effects of an intensive environmental education experience on the attitudes of fifth- through eighth-grade students (n=502) toward wildlife. (Contains 24 references.) (MDH)
Descriptors: Biology, Cognitive Processes, Cognitive Style, Educational Research
Cajete, Gregory A. – 1999
Explanations of natural phenomena within a traditional Native American context are often at odds with Western scientific philosophy and what is taught in school science. Herein lies a very real conflict between two distinctly different worldviews: the mutualistic/holistic-oriented worldview of Native American cultures and the…
Descriptors: American Indian Education, Cognitive Style, Cultural Differences, Culturally Relevant Education
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Sanders, Mark – School Science and Mathematics, 1994
Discusses the Technology, Science, Mathematics Integration Project's technological problem-solving method, briefly describes 15 activities and the corresponding technology, science, and mathematics content involved (including 1 detailed example), and proposes a general structure of the activities and research in support of this approach. (MKR)
Descriptors: Alternative Assessment, Cognitive Style, Competition, Constructivism (Learning)