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Peer reviewedHawkins, Vincent J. – Clearing House, 1987
Indicates that only 21% of respondents (secondary school math teachers) used computer-assisted instruction for tutorial work, physical models to interpret abstract concepts, or real-life application of the arithmetic or algebraic manipulation. Recommends that creative teaching methods be applied to problem solving. (NKA)
Descriptors: Creative Teaching, Creative Thinking, Instructional Innovation, Learning Strategies
Peer reviewedFrank, David V.; And Others – Journal of Chemical Education, 1987
Discusses the differences between problems and exercises in chemistry, and some of the difficulties that arise when the same methods are used to solve both. Proposes that algorithms are excellent models for solving exercises. Argues that algorithms not be used for solving problems. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedMiddlecamp, Catherine; Kean, Elizabeth – Journal of Chemical Education, 1987
Discusses the difference between a generic chemistry problem (one which can be solved using an algorithm) and a harder chemistry problem (one for which there is no algorithm). Encourages teachers to help students recognize these categories of problems so they will be better able to find solutions. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedSchrader, C. L. – Journal of Chemical Education, 1987
Discusses the differences between problems and exercises, the levels of thinking required to solve them, and the roles that algorithms can play in helping chemistry students perform these tasks. Proposes that students be taught the logic of algorithms, their characteristics, and how to invent their own algorithms. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedAnderson, Carol P. – Journal of Chemical Education, 1988
Compares processes used to investigate issues in consumer chemistry to the solving of a puzzle in a mystery story. Suggests using similar methods to teach problem solving in consumer chemistry classes. Describes how such a process might progress. (CW)
Descriptors: Chemistry, College Science, Consumer Education, Critical Thinking
Peer reviewedPresseisen, Barbara Z. – Educational Leadership, 1988
Responding to criticism that teaching thinking places a misguided emphasis on process at the expense of curricular content, this article contends that teachers should focus on how to relate both content and process for meaningful learning, because the value of any knowledge or skill depends on its context. (TE)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Curriculum
Peer reviewedWoods, Donald R. – Journal of College Science Teaching, 1986
Suggests criteria to be used in selecting problem-solving activities and criteria to be considered in choosing media, exercises, and problems for the development of problem-solving skills. Provides perspectives on developing creativity and includes a chart on how thinking and attitude components relate. Also lists related reference materials. (ML)
Descriptors: Cognitive Processes, Creative Thinking, Creativity, Learning Strategies
Peer reviewedHenderson, Ronald W. – Contemporary Educational Psychology, 1986
Principles arising from aspects of Vygotsky's ideas for the development of self regulation and from cognitive social learning theory are discussed. It is suggested that present methods of teaching mathematics are not adequate and that the use of instructional technology is needed to overcome the shortcomings. (JAZ)
Descriptors: Cognitive Development, Foreign Countries, Helplessness, Information Technology
Peer reviewedDerry, Sharon J.; Murphy, Debra A. – Review of Educational Research, 1986
Empirical and theoretical evidence is presented to support the conclusion that improvement of learning ability is an important and viable educational goal. The improvement of learning ability necessitates development not only of specific learning skills, but also an executive control mechanism that automatically accesses and combines learning…
Descriptors: Educational Strategies, Elementary Secondary Education, Learning Processes, Learning Strategies
Bower, B. – Science News, 1985
Reports that microcomputer use will help six year-old children solve some types of problems better but will not improve their general learning and thinking abilities. Logo programing resulted in higher creativity scores and in children's ability to monitor their own thinking, but revolutionary changes in cognitive development were not found. (DH)
Descriptors: Arithmetic, Computer Oriented Programs, Creativity, Educational Research
Kwon, Oh Nam – 2002
The undergraduate curriculum in differential equations has undergone important changes in favor of the visual and numerical aspects of the course primarily because of recent technological advances. Yet, research findings that have analyzed students' thinking and understanding in a reformed setting are still lacking. This paper discusses an ongoing…
Descriptors: Computer Uses in Education, Concept Formation, Curriculum Design, Differential Equations
Misailadou, Christina; Williams, Julian – International Group for the Psychology of Mathematics Education, 2003
We report a study of 10-14 year old children's use of additive strategies while solving ratio and proportion tasks. Rasch methodology was used to develop a diagnostic instrument that reveals children's misconceptions. Two versions of this instrument, one with "models" thought to facilitate proportional reasoning and one without were…
Descriptors: Mathematical Concepts, Methods, Inferences, Misconceptions
Egan, Lorraine Hopping – 1997
This activity book encourages students to think like inventors by employing ready-to-use materials, a timeline game, and topics from social studies, mathematics, science, language arts, and art. The first section explains the definition of invention and explores accidental inventions. It is followed by a section that examines the effects of…
Descriptors: Creativity, Elementary Education, Hands on Science, Interdisciplinary Approach
Ogunsola-Bandele, Mercy F.; Oyedokun, Comfort A. – 1998
This study examined the effectiveness of a conceptual change teaching strategy over the traditional method on high school students' (N=152) attitudes towards learning biology. The study employed a two-group experimental control design. The experimental group was taught using a conceptual change teaching strategy. A 21-item instrument that is…
Descriptors: Biology, Cognitive Processes, Concept Formation, Educational Strategies
Stepich, Donald A.; Ertmer, Peggy A.; Lane, Molly M. – 2000
This paper proposes the use of specific coaching strategies to facilitate students' use of expert-like problem-solving strategies while analyzing and solving instructional design case studies. Findings from an exploratory study, designed to examine changes in students' problem-solving skills as they analyzed case studies, suggested that students…
Descriptors: Case Studies, Critical Thinking, Higher Education, Instructional Design


