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Showing 1 to 15 of 17 results Save | Export
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Balta, Nuri; Eryilmaz, Ali – International Journal of Science and Mathematics Education, 2017
One way to fascinate, engage, arouse curiosity, motivate, and stimulate intellectual development in learning scientific concepts is to use counterintuitive questions. These questions make students aware of the inadequacies of their own thinking by exposing them to situations whose outcomes are inconsistent with what they would expect. In this…
Descriptors: Intuition, Learner Engagement, Intellectual Development, Measures (Individuals)
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Charles, Frédéric – Athens Journal of Education, 2014
In French nursery schools ("l'école maternelle française"), primary school teachers take charge of the content organised into teaching areas of activities. The prescribed teaching activity "Discovering the world of life sciences, objects and material" refers to biology, physical sciences, chemistry and technology. The…
Descriptors: Preschools, Teaching Methods, Preschool Teachers, Curriculum Implementation
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Chigisheva, Oksana, Ed.; Popov, Nikolay, Ed. – Bulgarian Comparative Education Society, 2016
Papers from the proceedings of the 14th Annual Conference of the Bulgarian Comparative Education Society were submitted in two volumes. Volume 1 contains papers submitted at the conference held in Sofia, Bulgaria, June 14-17, 2016. Volume 2 contains papers submitted at the 4th International Partner Conference of the International Research Centre…
Descriptors: Comparative Education, Conference Papers, Conferences (Gatherings), International Education
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Frantz, Kyle – Science Teacher, 2007
Initiatives in education reform emphasize inquiry-based active learning and real-world relevance to increase science literacy nationwide. Active teaching and learning approaches yield rapid intellectual development and may increase interest and motivation to learn science. Incorporating the topic of drug use with neuroscience, biology, psychology,…
Descriptors: Narcotics, Learning Motivation, Educational Change, Adolescents
Anisimova, V. S. – Soviet Education, 1974
The author examines current techniques used to teach elementary school children how to analyze and compare. Emphasis is placed upon developing these modes of mental activity while teaching biological concepts. (DE)
Descriptors: Biology, Cognitive Development, Cognitive Processes, Critical Thinking
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Settlage, John; Sabik, Cindy Meyer – Theory into Practice, 1997
This paper advocates a philosophy of science teaching that embraces intellectual conflict, suggesting that it is important to engage students in productive intellectual conflict in order to teach for conceptual change. Presents two approaches that could actualize the philosophy of "teaching the conflicts" within science instruction. (SM)
Descriptors: Conflict Resolution, Consciousness Raising, Elementary Secondary Education, Intellectual Development
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McNay, Margaret – Childhood Education, 1985
Discusses the value of preserving wonder and curiosity as part of a child's intellectual growth and experience in elementary school science. Practical steps for handling students' wonder questions are identified, including children's knowledge, speculation and hypothesis, identification of possible inquiry methods, research, and sharing new…
Descriptors: Children, Curiosity, Discovery Processes, Discussion
Saunders, Walter L.; Shepardson, Daniel – 1984
This study examined the effect of formal and concrete instruction upon science achievement and intellectual development of sixth grade students. Formal instruction, which emphasized oral and written language, included lecture, discussion, oral quizzes, written assignments, reading assignments, films, film strips, written tests, and quizzes.…
Descriptors: Academic Achievement, Developmental Stages, Elementary School Science, Grade 6
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Hartford, Fred; Good, Ron – Journal of Research in Science Teaching, 1982
Determined if student questioning skills could be taught within framework of an ongoing chemistry course and if acquisition of these skills depends on high school students' (N=108) level of intellectual development. Results indicate that questioning skills can be acquired by students, regardless of their level of Piagetian intellectual…
Descriptors: Chemistry, Cognitive Processes, Developmental Stages, High School Students
Greeno, James G. – 1977
The ways in which students in grades five and six solve problems is the focus of this paper, which provides background for the staff of the Skills Essential to Learning Television Project, (a multi-level series of video and print resources for classroom use). It considers the problem-solving process categories of understanding, transformation, and…
Descriptors: Intellectual Development, Intermediate Grades, Learning Processes, Mathematical Applications
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Metz, Kathleen E. – Review of Educational Research, 1995
Developmental assumptions that are frequently regarded as constraints on elementary school science curricula are analyzed. The argument that elementary school children cannot function as experimentalists because they have not yet attained formal operational thought is not supported by the Piagetian or non-Piagetian research reviewed. (SLD)
Descriptors: Child Development, Cognitive Development, Elementary School Science, Elementary School Students
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Purser, Roger K.; Renner, John W. – Science Education, 1983
Examined influence of teaching methods on content achievement of concrete and formal concepts by students differing in level of operational thought and influence of concrete/formal teaching on the intellectural development of students (N=86 grade 9-10 biology students). Methodology, results, conclusions, and implications are discussed. (Author/JN)
Descriptors: Academic Achievement, Biology, Cognitive Development, Cognitive Processes
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Pavelich, Michael J. – Journal of Chemical Education, 1982
Presents ideas to promote higher-level thinking in general chemistry classrooms/laboratories, focusing on applications of Patricia E. Blosser's taxonomy to enhance students' convergent/divergent/evaluative thinking. Compares Blosser's taxonomy with Bloom and Piagetian taxonomies, suggesting a combined Blosser/Piagetian taxonomy to achieve goals of…
Descriptors: Abstract Reasoning, Chemistry, College Science, Convergent Thinking
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Zielinski, Theresa Julia – Journal of Chemical Education, 1995
Explains how the Mathcad computer program can promote the development of higher-order chemical thinking skills of students taking junior-level physical chemistry courses. The kinetics of first-order series and reversible reactions is used as an example of how this can be implemented within an interactive laboratory or lecture format. (PVD)
Descriptors: Computer Assisted Instruction, Computer Literacy, Computer Software, Computer Uses in Education
Villavicencio, Rosalina R.; Tayko, Perla Rizalina M. – Journal of Science and Mathematics Education in Southeast Asia, 1981
Investigated relationship of teachers' cognitive levels and cognitive level demand of textbooks in relation to students capability to learn biology. Based on findings, teaching units were designed to help science teachers acquire skills, use innovative formats of instruction for abstract topics, and develop logical thinking skills through biology…
Descriptors: Abstract Reasoning, Biology, Curriculum Development, Developmental Stages
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