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Peer reviewedHill, Doug; Wheeler, Alan – Research in Science and Technological Education, 1991
An alternative procedure to the draw-a-scientist test (DAST) was used to uncover students ideas about science, scientists, and technology. A series of illustrations (based on the interview-about-instances (IAI) procedure) concerned with appearance, gender, work place, and employment were developed. Through interviews, students (n=121) responded to…
Descriptors: Career Choice, Cultural Differences, Elementary Secondary Education, Foreign Countries
Peer reviewedJohnston, Kate; Scott, Philip – Research in Science and Technological Education, 1991
An intervention study with 12- to 13-year-old students which attempts to move students' thinking about matter and the dissolving process toward the school science view by use of activities and group discussion tasks which directly address some of the thinking underlying students' prior ideas is described. Students responses to the strategies…
Descriptors: Chemistry, Cognitive Development, Diagnostic Teaching, Discussion (Teaching Technique)
Peer reviewedPestel, Beverly C. – Science Education, 1993
Reviews research relevant to the problem of unsatisfactory student problem-solving abilities and suggests a teaching strategy that addresses the issue. Author explains how she uses teaching aloud problem solving (TAPS) in college chemistry and presents evaluation data. Among the findings are that the TAPS class got fewer problems completely right,…
Descriptors: Chemistry, College Science, Educational Research, Higher Education
Peer reviewedFinn, Gerry P. T. – Scottish Educational Review, 1992
Discusses difficulties of examining Jean Piaget's work, caused in part by his own revisions and earlier, inadequate interpretation in English translation. Examines common misunderstandings of Piagetian developmental stages and similar misinterpretations of his ideas on education. Focuses on importance of other disciplines, including psychology and…
Descriptors: Child Development, Cognitive Development, Developmental Psychology, Developmental Stages
Peer reviewedPerso, Thelma – Australian Mathematics Teacher, 1992
Discusses how student errors can be utilized to understand the nature of the conceptions that underlie students' mathematical activity. Looks at why errors are made in mathematics, how teachers and students perceive errors, and how to use errors in the classroom. (MDH)
Descriptors: Cognitive Structures, Diagnostic Teaching, Elementary Secondary Education, Error Patterns
Peer reviewedKindfield, Ann C. H. – Journal of Biological Education, 1991
Discusses the frequent misconception displayed by students that chromosome structure is a function of chromosome number or ploidy. Provides detailed analyses of the evidence concerning the prevalence of this ploidy/structure misconception among students of introductory genetics and the potential sources for inaccurate communication that it can…
Descriptors: Biology, Cognitive Development, Concept Formation, Genetics
Peer reviewedMarkowsky, George – College Mathematics Journal, 1992
Typically, the mathematical properties concerning the golden ratio are stated correctly, but much of what is presented with respect to the golden ratio in art, architecture, literature, and aesthetics is false or seriously misleading. Discussed here are some of the most commonly repeated misconceptions promulgated, particularly within mathematics…
Descriptors: College Mathematics, Geometric Concepts, Mathematical Concepts, Mathematics Education
Peer reviewedMuth, K. Denise – Contemporary Educational Psychology, 1992
To determine how middle school students cope with the demands of arithmetic word problems, 140 eighth graders (67 males and 73 females) had to solve problems modeled after those of the National Assessment of Educational Progress. Extraneous information and extra steps reduce the accuracy of students' word problem solutions. (SLD)
Descriptors: Arithmetic, Grade 8, Junior High School Students, Junior High Schools
Wiggins, Grant – Phi Delta Kappan, 1993
Two key assumptions of conventional test design--the compartmentalization of knowledge and the decontextualization of knowing--are false. Because competent performance requires both context and judgment, it is senseless to test for mastery as an unvarying response to unambiguous stimuli. Test-makers must link their tests to the tasks, contexts,…
Descriptors: Context Effect, Elementary Secondary Education, Misconceptions, Performance
Peer reviewedLin, Fou-Lai – Proceedings of the National Science Council, Republic of China, 1991
The errors and strategies made by students who consistently use the incorrect-addition strategy on "hard" ratio tasks were investigated. The characteristics of these "adders," such as awareness of noninteger multiples, the use of fractions and decimals, awareness of both within and between ratios, and distinguishing nonratio…
Descriptors: Addition, Decimal Fractions, Decision Making, Foreign Countries
Peer reviewedPicciarelli, V.; And Others – European Journal of Engineering Education, 1991
Results of a systematic investigation into university students' (n=236) misunderstandings of d.c. simple circuit operations are reported. These results provide evidence of various misconceptions present before and after teaching the following topics: a battery as a source of constant current; the functional relation expressed by Ohm's law; power…
Descriptors: Cognitive Development, College Students, Electric Batteries, Electric Circuits
Peer reviewedFinegold, M.; Gorsky, P. – International Journal of Science Education, 1991
The consistency, if any, with which force concepts are used by individual students in different, but closely related, contexts was investigated. A total of 534 university and high school students were tested to elicit their beliefs about the forces acting on various objects. Students' beliefs about the forces acting on objects at rest and in…
Descriptors: Beliefs, Cognitive Processes, Concept Formation, Context Effect
Peer reviewedWatson, Jane – Australian Mathematics Teacher, 1991
It is difficult for students to unlearn misconceptions that have been unknowingly reinforced by teachers. The examples "multiplication makes bigger,""pi equals 22/7," and the use of counter examples to demonstrate the numerical property of closure are discussed as potential areas where misconceptions are fostered. (MDH)
Descriptors: Concept Formation, Division, Educational Diagnosis, Elementary Secondary Education
Peer reviewedNelson, F. Howard – International Journal of Educational Reform, 1992
Debunks eight misconceptions concerning U.S.'s alleged "lavish" spending on education in comparison to other countries. The share-of-national-income approach and measures of per pupil spending are frequently misinterpreted and often exclude education need and education resource cost. Nations with an expensive, highly productive labor…
Descriptors: Comparative Education, Context Effect, Cost Effectiveness, Economic Factors
Peer reviewedLecoutre, Marie-Paule – Educational Studies in Mathematics, 1992
Reviews research indicating that students' cognitive models hold random events to be equiprobable Examined 87 students between the ages of 15 and 17 to determine whether masking a random event using geometric figures would affect the students' view of the event as equiprobable. Results indicated that masking overcame the equiprobable bias of the…
Descriptors: Cognitive Processes, Cognitive Structures, Cognitive Style, Mathematical Concepts


