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Kallery, Maria; Sofianidis, A.; Pationioti, P.; Tsialma, K.; Katsiana, X. – International Journal of Early Years Education, 2022
Cognitive style differences, also known as 'empathizing' and 'systemizing' have been argued as one reason that may explain differences in children's motivation to learn science. Researchers claim that people with a 'systemizing' cognitive style are likelier to engage in science than those with an 'empathizing' cognitive style. As such, they…
Descriptors: Cognitive Style, Learning Motivation, Learner Engagement, Inquiry
Geddes, Kimberly A. – Gifted Child Today, 2010
This article presents lesson plans that incorporate tiered objectives and brainstorming techniques as means for differentiating instruction and ensuring that learners are challenged at levels commensurate with their abilities even though they are developing an understanding of the same physics concepts. A listing of materials and resources…
Descriptors: Cognitive Style, Advanced Placement, Lesson Plans, Gifted
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Brown, Ted; Zoghi, Maryam; Williams, Brett; Jaberzadeh, Shapour; Roller, Louis; Palermo, Claire; McKenna, Lisa; Wright, Caroline; Baird, Marilyn; Schneider-Kolsky, Michal; Hewitt, Lesley; Sim, Jenny; Holt, Tangerine-Ann – Australasian Journal of Educational Technology, 2009
The objective for this study was to determine whether learning style preferences of health science students could predict their attitudes to e-learning. A survey comprising the "Index of Learning Styles" (ILS) and the "Online Learning Environment Survey" (OLES) was distributed to 2885 students enrolled in 10 different health…
Descriptors: Electronic Learning, Cognitive Style, Student Attitudes, Science Programs
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Bush, H. Francis; Squire, James; Sullivan, Gerald; Walsh, Vonda; English, Anthony; Bolen, Rosie – Contemporary Issues in Education Research, 2008
E-learning has become a mainstream educational opportunity, as noted in "U.S. News & World Report." Further, differences among college students have been documented in various disciplines. An experiment was conducted to determine the effects of network latency on pedagogical efficacy based on the students who were classified as in…
Descriptors: Comparative Analysis, Efficiency, Humanities, Networks
Kovalik, Susan J.; Olsen, Karen D. – Corwin, 2010
This book examines learning science from multiple perspectives--especially a child's. The whimsical character of Mary Froggins guides readers through the steps of igniting students' natural sense of wonder, incorporating brain research, integrating science concepts with other subjects, and applying science to daily life. The authors demonstrate…
Descriptors: Educational Strategies, Curriculum Development, Multiple Intelligences, Science Programs
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Tamir, Pinchas; Kempa, Richard F. – Journal of Educational Research, 1977
Descriptors: Academic Achievement, Career Awareness, Cognitive Style, Cognitive Tests
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Etkina, Eugenia; Matilsky, Terry; Lawrence, Michael – Journal of Research in Science Teaching, 2003
The Rutgers Astrophysics Institute is a program in which gifted high school students learn about contemporary science and its methods, and conduct independent authentic research using real-time data. The students use the processes of science to acquire knowledge, and serve as cognitive apprentices to an expert astrophysicist. A variety of…
Descriptors: Advanced Placement, High School Students, Physics, Talent Development
Spector, Barbara S.; Gibson, Charles W. – 1989
The purpose of this study was to explore middle school students' perceptions of what factors facilitated their learning of science. Between 50 and 60 high-achieving middle school students were in residence on the University of South Florida campus for 12 consecutive days of study in the "World of Water" program. There were two sessions per summer…
Descriptors: Cognitive Processes, Cognitive Style, Curriculum Design, Intermediate Grades