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Chen, Hong-Ren; Lin, Wen-Shan; Hsu, Tien-Yu; Lin, Tzu-Chun; Chen, Nian-Shing – IEEE Transactions on Learning Technologies, 2023
Research on the use of augmented reality technology in museums is mostly limited to scientific knowledge. The use of wearable device technology learning materials to benefit students in the process of English learning has been somewhat explored, along with differences in students' learning styles and their influence on students' learning…
Descriptors: Educational Games, Museums, Situated Learning, Cognitive Style
Bektas, Fatih – Educational Research and Reviews, 2013
This study aimed to explore learning styles of the professional mountaineers. The research was carried out according to the survey model. The research group composed of 61 professional mountaineers (n[subscript (men)] = 45, n[subscript (women)] = 16) who attended Advanced Snow Ice Education Camp in Rize on September 1-7, 2012, the last camp of…
Descriptors: Learning Strategies, Cognitive Style, Foreign Countries, Athletes
Antle, Alissa N. – Behaviour & Information Technology, 2013
In order to better understand how to design hands-on child-computer interaction, we explore how different styles of interaction facilitate children's thinking while they use their hands to manipulate objects. We present an exploratory study of children solving a spatial puzzle task. We investigate how the affordances of physical, graphical…
Descriptors: Thinking Skills, Hands on Science, Cognitive Style, Problem Solving
Peer reviewedAndrews, John D. W. – Journal of Educational Research, 1984
Discovery and expository learning were compared in a study of independent and dependent learners enrolled in a college chemistry course. Discovery learning was found to be superior for both groups of learners, with independent students performing better than dependent students using discovery learning. (Author/DF)
Descriptors: Chemistry, Cognitive Style, Discovery Learning, Higher Education
St. John, Michael J. – 1999
This paper describes W.A.S.H. (We All Speak Here), an experiential learning strategy that provides learners (individuals or groups) with a means for exploring, discussing, and discovering their thoughts and feelings on any idea, issue, or concept. This strategy is part of a larger model in which students develop a deeper understanding of learning…
Descriptors: Brainstorming, Cognitive Style, Discovery Learning, Discussion (Teaching Technique)
PDF pending restorationPerkins, D. N.; And Others – 1985
Under normal instructional circumstances, some youngsters learn programming in BASIC or LOGO better than others. Clinical investigations of novice programmers suggest that this happens in part because different students bring different patterns of learning to the programming context. Many students disengage from the task whenever trouble occurs,…
Descriptors: Classroom Observation Techniques, Cognitive Style, Discovery Learning, Elementary Secondary Education
Peer reviewedTuovinen, Juhani E.; Hill, Douglas M. – School Science and Mathematics, 1992
Offers LOGO as an environment that facilitates the development of cognitive strategies useful in problem solving. Presents LOGO activities requiring students to combine preprogramed procedures to produce worksheet patterns. Using this approach promotes using LOGO as a vehicle for problem solving and results in a more positive attitude toward LOGO.…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Style, Computer Assisted Instruction
Peer reviewedBickel, Beverly; Truscello, David – TESOL Journal, 1996
Argues that, if teachers of English as a Second Language deepen their understanding of learning styles and strategies, they can maximize the potential of computer-assisted individualized instruction for their students. The article suggests that, when teachers share their resources with their students and then let them go, the students will find…
Descriptors: Audiovisual Aids, Cognitive Style, College Students, Community Colleges
Peer reviewedStephens, Diane – English Education, 1987
Suggests that learning comes about by recognizing anomalies, experiencing doubt, and making subsequent changes, and uses a study undertaken in a classroom for learning disabled students to illustrate. (JC)
Descriptors: Classroom Environment, Cognitive Development, Cognitive Style, Discovery Learning
Peer reviewedElshout, Jan J.; Veenman, Marcel V. J. – Journal of Educational Research, 1992
The relationship between intellectual ability, working method, and learning was investigated with simulations in both structured and unstructured learning environments. High- and low-intelligence college students' thinking-aloud protocols were analyzed on quality of working method. Results indicated that both intellectual ability and working…
Descriptors: Cognitive Ability, Cognitive Style, College Students, Computer Simulation
Grala, Maria; And Others – 1987
A handbook for Peace Corps volunteers gives ideas and suggestions for improving second language learning. Chapter one answers some of the most common questions about learning foreign languages, including the best age and means for language learning, avoiding mistakes, dealing with the inability to understand a message, the time needed to master…
Descriptors: Cognitive Style, Communication Apprehension, Diaries, Discovery Learning
Weir, Sylvia – 1987
This book describes the nurturing of a variety of learning styles through the use of the Logo programming approach, especially for persons with special needs. The book interweaves case descriptions of microcomputer uses with theoretical analysis, to provide educators with a framework for thinking about their students' thinking. Descriptions of the…
Descriptors: Autism, Case Studies, Cerebral Palsy, Cognitive Processes
Peer reviewedKincaid, Charlene; And Others – Mathematics Teacher, 1994
Presents activities to create designs with different arrangements of square tiles, which gives students an opportunity to make conjectures about perimeter and to make convincing arguments to justify those conjectures. Includes worksheets. (MKR)
Descriptors: Cognitive Style, Creative Thinking, Discovery Learning, Geometric Concepts
Peer reviewedPizzini, Edward L.; Shepardson, Daniel P. – Journal of Research in Science Teaching, 1992
Compares models of the classroom dynamics for a traditional laboratory setting and a problem-solving-centered environment, both at the eighth grade science level. Descriptive data indicate no differences in the models, whereas path analyses suggest that, in the problem-solving model, student behaviors significantly correlate to lesson structure,…
Descriptors: Causal Models, Classroom Research, Classroom Techniques, Cognitive Style
James Madison Univ., Harrisonburg, VA. Workforce Improvement Network. – 2002
This guide describes development of the problem-based approach of GED as project. It is Volume 1 of a proposed four-volume series. Section 1 describes the concept of GED as project, thinking and problem solving, successful intelligence, and integration of content and skills. Section 2 covers GED as project implementation using learning projects…
Descriptors: Active Learning, Adult Education, Classroom Techniques, Cognitive Style
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