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Agustian, Hendra Y. – Chemistry Education Research and Practice, 2022
This article seeks to provide researchers and practitioners in laboratory education, particularly those involved in the curriculum design and implementation of teaching laboratories at university level, with a conceptual framework and a working model for an integrated assessment of learning domains, by attending to a more holistic approach to…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Curriculum Design
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DeKorver, Brittland K.; Towns, Marcy H. – Journal of Chemical Education, 2015
Little research exists on college students' learning goals in chemistry, let alone specifically pertaining to laboratory coursework. Because students' learning goals are linked to achievement and dependent on context, research on students' goals in the laboratory context may lead to better understanding about the efficacy of lab curricula. This…
Descriptors: Undergraduate Students, College Science, Science Laboratories, Teaching Methods
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Swinyard, Craig; Larsen, Sean – Journal for Research in Mathematics Education, 2012
The purpose of this article is to elaborate Cottrill et al.'s (1996) conceptual framework of limit, an explanatory model of how students might come to understand the limit concept. Drawing on a retrospective analysis of 2 teaching experiments, we propose 2 theoretical constructs to account for the students' success in formulating and understanding…
Descriptors: Mathematics Education, Learner Engagement, Models, Experiments
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Hushman, Carolyn J.; Marley, Scott C. – Journal of Educational Research, 2015
The authors investigated whether the amount of instructional guidance affects science learning and self-efficacy. Sixty 9- and 10-year-old children were randomly assigned to one of the following three instructional conditions: (a) guided instruction consisting of examples and student-generated explanations, (b) direct instruction consisting of a…
Descriptors: Elementary School Students, Self Efficacy, Science Education, Science Instruction
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Marusic, Mirko; Slisko, Josip – International Journal of Science Education, 2012
The Lawson Classroom Test of Scientific Reasoning (LCTSR) was used to gauge the relative effectiveness of three different methods of pedagogy, "Reading, Presenting, and Questioning" (RPQ), "Experimenting and Discussion" (ED), and "Traditional Methods" (TM), on increasing students' level of scientific thinking. The…
Descriptors: Classroom Techniques, Cognitive Development, Science Instruction, Physics
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Siegler, Robert S.; And Others – Developmental Psychology, 1973
Ten- and 11-year-old boys and girls were taught to solve Inhelder and Piaget's pendulum problem and the results of the experiment replicated their expectation that unaided 10- and 11-year-olds do not often solve the pendulum problem. (Editor/RK)
Descriptors: Cognitive Development, Data Collection, Elementary School Students, Experiments
Hearne, Thomas; Devore, Paul – 1973
Two teaching experiments were conducted relating to the relative effectiveness of anthropological films versus reading of literature as means of conveying anthropological information to college students and of influencing their attitudes toward other societies. In one, a student group viewed films about the Netsilik Indians, one read literature,…
Descriptors: Anthropology, Attitude Change, Cognitive Development, Educational Experiments
Gabor, Georgia M. – California Journal of Educational Research, 1972
Article describes an experiment to deterimine how to promote cognitive growth in terms of classroom mathematics learning. (MM)
Descriptors: Abstract Reasoning, Academic Achievement, Cognitive Development, Educational Experiments
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Leonard, William H. – Journal of Research in Science Teaching, 1992
An interactive computer/videodisc learning approach to the conventional laboratory approach for learning biology concepts and science process skills were compared. The two approaches appear equivalent when evaluated by traditional learning outcomes, but the interactive videodisc strategy was significantly more time efficient than a traditional…
Descriptors: Biology, Cognitive Development, Concept Formation, Higher Education
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White, Richard T. – Physics Education, 1979
Discusses the cognitive outcomes of physics laboratory exercises and suggests three types of experiments which should be added to those normally used in physics courses. (HM)
Descriptors: Cognitive Development, College Science, Conferences, Higher Education
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Pushkin, David B. – Journal of College Science Teaching, 1997
Recommends a constructivist approach to physics laboratory activities to make laboratories a place for personal maturation and cognitive growth. Describes class design in which ideas and techniques are exchanged which allow students the opportunity to initiate investigations based on early conceptual assumptions, and extend the investigation…
Descriptors: Cognitive Development, Constructivism (Learning), Creative Thinking, Critical Thinking
Adamo, Joseph A. – 1999
Students set in their ways are usually reluctant, as a general rule, to deal with open-ended investigative scenarios. In order to acquaint the student with the physical method and philosophical thought process of the discipline, the tone of the course must be set early on. The present study was conducted to develop scenarios and microbial model…
Descriptors: Cognitive Development, College Science, Community Colleges, Experiments
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Fix, William T.; Renner, John W. – Journal of Chemical Education, 1979
A course is described that is designed to encourage exploration, conceptual invention, and expansion of an idea. Results are given that relate to curricular experimentation with chemistry. (SA)
Descriptors: Chemistry, Cognitive Development, Course Content, Course Descriptions
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Garnett, Patrick J.; And Others – Australian Science Teachers Journal, 1995
Reviews the objectives of laboratory work in chemistry education, current laboratory practice, and factors likely to impact on the nature of laboratory work in the future. Proposes that more investigation-style laboratory work be provided in order to foster the development of students' investigation skills. (Author/MKR)
Descriptors: Chemistry, Cognitive Development, College Science, Discovery Learning
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