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Hong, Dae S. – International Journal of Science and Mathematics Education, 2023
We examined widely used popular calculus textbooks to explore opportunities to learn the limit concept. Definitions, worked problems, and exercise problems were coded to examine if these tasks allow students to use informal thinking to coordinate domain and range processes to understand the infinite process of limit. Results revealed many exercise…
Descriptors: Calculus, Mathematics Instruction, Mathematics Teachers, Genetics
Sonnleitner, P.; König, A.; Sikharulidze, T. – Environmental Education Research, 2018
This paper gives an example of how computer-based problem-solving scenarios can be embedded in a course on sustainability, in order to illustrate the highly versatile way in which such scenarios can be used to structure and evaluate learning on complexity on an individual level, as well as learning in diverse groups. After defining criteria, a…
Descriptors: Problem Solving, Environmental Education, Sustainability, Genetics
Lee, Silvia Wen-Yu; Tsai, Chin-Chung – Journal of Science Education and Technology, 2013
We conducted a literature review of using educational technology in biology learning from 2001 to 2010. A total of 36 empirical articles were included for review. Based upon the content analyses of these studies, such as technologies utilized, student sample, biological topics involved, the research purpose, and methodology, the following…
Descriptors: Educational Technology, Student Attitudes, Genetics, Learning Processes
Baker, Ryan S.; Hershkovitz, Arnon; Rossi, Lisa M.; Goldstein, Adam B.; Gowda, Sujith M. – Journal of the Learning Sciences, 2013
We present a new method for analyzing a student's learning over time for a specific skill: analysis of the graph of the student's moment-by-moment learning over time. Moment-by-moment learning is calculated using a data-mined model that assesses the probability that a student learned a skill or concept at a specific time during learning (Baker,…
Descriptors: Learning Processes, Intelligent Tutoring Systems, Probability, Skill Development
Ludvigsen, Sten R. – Learning, Media and Technology, 2012
In this article, I develop a perspective on learning as multilayered phenomena. I take a socio-genetic approach in order to understand human activity and to show how categories are a fundamental part of learning in a specific type of institutional practice. In the empirical section, student dialogue is analysed in relation to a set of categories…
Descriptors: Foreign Countries, Secondary School Students, Science Education, Inquiry

Hafner, Robert; Stewart, Jim – Science Education, 1995
Examines how problem solving in the domain of Mendelian genetics proceeds in situations where solvers' mental models are insufficient to solve problems at hand (model-revising problem solving). The study addressed the heuristics characteristic of successful model-revising problem solving and other aspects of student model use. (LZ)
Descriptors: Concept Formation, Genetics, Heuristics, High Schools
Holowinsky, Ivan Z. – 1981
The paper consists of a review of 24 studies on mental retardation published in two Soviet journals between 1970 and 1980. An introductory section focuses on the theoretical framework for mental retardation research in the Soviet Union with a differentiation between oligophrenics (who have organic brain damage) and the intellectually backward (or…
Descriptors: Associative Learning, Emotional Development, Foreign Countries, Genetics
Perkins, David – 1995
Pychologists, educators, and others have challenged the idea of a fixed IQ. This book uses recent research and earlier discoveries to argue that intelligence is not genetically set. Noting that the idea of learnable intelligence reflects the belief that intelligence can be taught, the book outlines a theory of learnable intelligence, including…
Descriptors: Cognitive Style, Epistemology, Experiential Learning, Genetics

Stewart, Jim – Science Education, 1988
Examines various types of problems that researchers have used to demonstrate problem solving. Focuses on genetics problems. Discusses classes of learning outcomes, conceptual knowledge gains, content-independent heuristics, content-specific procedures, understanding the nature of science and a typology of genetics problems. (CW)
Descriptors: Biological Sciences, Cognitive Ability, College Science, Genetics
Idros, Sharifah Norhaidah Syed – Journal of Science and Mathematics Education in Southeast Asia, 2004
Science is at heart a rational activity. Reasoning, being an important component of critical thinking has been successfully taught using Socratic methods. As an approach, the instructor or designer of instruction models an inquiring and probing mind focusing on providing questions and not answers. The main aim has been to allow learners to…
Descriptors: Constructivism (Learning), Problem Solving, Genetics, Learning Processes