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What Works Clearinghouse Rating
Peer reviewedHudson, Lynne M.; Gray, William M. – Adolescence, 1986
Administered the Adolescent Egocentrism Scale (AES) to middle and high school students (N=129). Found partial support for Inhelder and Piaget's and Elkind's views that adolescent egocentrism is a function of beginning formal operations. Discusses the difficulty of assessing the true thoughts/feelings of persons who are worried how they will appear…
Descriptors: Adolescents, Analysis of Variance, Cognitive Development, Egocentrism
Peer reviewedMcDonald, Janet L. – Educational Studies in Mathematics, 1989
Investigates whether distinctions in cognitive structures between formal and concrete operational students effect their ability to produce an accurate cognitive structure, retain geometric content, and retain cognitive structures. Concludes that clear structures can be derived for the students. (Author/YP)
Descriptors: Cognitive Development, Cognitive Mapping, Cognitive Structures, Formal Operations
Peer reviewedBoylan, Colin – Research in Science and Technological Education, 1988
Reviews the theoretical framework of instructional programs and the emphasis on enhancing formal reasoning ability. Investigates the effect of an instructional program using inquiry-based learning in pre-service science teacher education students. Reports that the promotion of formal reasoning abilities may be achieved through the five-phase…
Descriptors: Acceleration (Education), Cognitive Development, College Science, Foreign Countries
Peer reviewedBoyes, Michael C.; Chandler, Michael – Journal of Youth and Adolescence, 1992
To evaluate the part that nascent skeptical doubt plays in shaping adolescent social-cognitive development, 61 high school students clearly classified as in concrete or formal operational stages of cognitive development completed a measure of epistemic stances. A relationship was found between cognitive and epistemic development. (SLD)
Descriptors: Adolescent Development, Adolescents, Cognitive Development, Developmental Stages
Brown, Dave F.; Canniff, Mary – Middle School Journal (J3), 2007
One of the most challenging daily experiences of teaching young adolescents is helping them transition from Piaget's concrete to the formal operational stage of cognitive development during the middle school years. Students who have reached formal operations can design and test hypotheses, engage in deductive reasoning, use flexible thinking,…
Descriptors: Middle School Teachers, Curriculum Design, Cognitive Processes, Adolescent Development
Peer reviewedGordon, Debra Ellen – New Directions for Child Development, 1988
Considers the period of adolescence and describes how cognitive-developmental concerns might apply to the understanding of adolescent problems in interpersonal and affective adaptation. Also investigates ways in which intervention practices with adolescents might be placed within a cognitive-developmental context. (PCB)
Descriptors: Abstract Reasoning, Adolescents, Cognitive Development, Developmental Stages
Aagaard, Lola; Boram, Robert – 2003
Jean Piaget's classic theory of cognitive development would imply that the higher-order items on the Kentucky state assessment would only be possible for students well into concrete operations or beginning formal operations. The implication would be that Kentucky fourth graders who are not fully concrete yet may be hitting a developmental ceiling…
Descriptors: Cognitive Development, Elementary School Students, Formal Operations, Grade 4
Pace, Sandra Falconer – 1987
This paper provides an introduction to the Alberta Education Developmental Framework, and describes the provincial department's position on curriculum and the cognitive domain. Intended for use in designing and implementing instruction, the developmental framework delineates the developmental stages and processes through which students progress,…
Descriptors: Cognitive Ability, Cognitive Development, Cognitive Processes, Context Effect
Peer reviewedRaven, Ronald J. – Science Education, 1987
Discusses a study which compared differences in ratio construction made by high school freshman and junior students. Reports that more freshmen than juniors selected solutions involving one variable, whereas juniors chose solutions that coordinated two variables in a mathematical or verbal rule. Reviews implications in problem solving and concept…
Descriptors: Cognitive Development, Cognitive Processes, Formal Operations, Instructional Improvement
Peer reviewedScruggs, Marie M. – Science and Children, 1988
Reviews recent research addressing the problem of matching students' cognitive levels to science textbooks. Suggests that most texts are written above the level of the students for whom they are written. Promotes experiential learning at the middle level and concentration on "right thinking" rather than on "right answers." (CW)
Descriptors: Cognitive Development, Elementary School Science, Elementary Secondary Education, Formal Operations
Peer reviewedChletsos, Peter N.; And Others – Journal of Research and Development in Education, 1989
This article presents evidence of the reliability and validity of a new paper-and-pencil test of proportional reasoning, Paper-and-Pencil Balance Beam Test. A Total of 627 individuals, aged 8-47, participated in the 3 studies discussed. Results support previous research which correlates performance on proportional reasoning problems with…
Descriptors: Age Differences, Cognitive Development, Elementary Secondary Education, Formal Operations
Peer reviewedMetz, 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
Strahan, David B. – 1986
This paper reviews some literature on the emergence of formal reasoning and reports a study of reasoning performance of 213 middle grade students in relationship to grade level and chronological age. While a number of large-scale studies have indicated that formal reasoning emerges in a regular progression across age ranges and grade levels, few…
Descriptors: Abstract Reasoning, Adolescents, Chronological Age, Cognitive Development
Peer reviewedBlack, John B.; And Others – Teachers College Record, 1988
A study in which Logo programming was used to teach problem-solving skills to fourth to eighth grade students is described. The results, and their implications for further use of the computer to teach higher order thinking skills, are discussed. The possible use of Prolog programming to teach reasoning skills is described. (JL)
Descriptors: Abstract Reasoning, Cognitive Development, Computer Uses in Education, Discovery Learning
Peer reviewedLawson, Anton E. – Journal of Research in Science Teaching, 1986
Reviews the neural modeling principles of learning, perception, cognition, and motor control, discusses their applications to sensory-motor problem solving, and explores possible relationships between that pattern of problem solving and aspects of higher order formal operational problem solving. Cites implications for science education. (ML)
Descriptors: Cognitive Development, Cognitive Processes, Developmental Stages, Elementary Education

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