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Burgess-Wilkerson, Barbara; Hamilton, Clovia; Garrison, Chlotia; Robbins, Keith – Online Submission, 2018
As of 2015, millennials (born in the 1990's) became the largest population in the workplace -- and are still growing. Studies indicate millennials are tech savvy but are lagging in the exercise of digital responsibility. In addition, they are passive towards environmental sustainability and fail to grasp the importance of social responsibility.…
Descriptors: Social Responsibility, Sustainable Development, Business Communication, Age Differences
Novick, Laura R. – 1991
The primary goal of this discussion is to summarize research on the role of expertise in accounting for individual differences in analogical problem solving among college students. The discussion also relates expertise differences to current theorizing in the developmental literature that concerns analogical reasoning in children. Contents focus…
Descriptors: Age Differences, Analogy, Children, College Students
OECD Publishing, 2015
"Education at a Glance: OECD Indicators" is the authoritative source for accurate information on the state of education around the world. It provides data on the output of educational institutions; the impact of learning across countries; the financial and human resources invested in education; access, participation and progression in…
Descriptors: Educational Indicators, Foreign Countries, Educational Attainment, Adults
Hubbs-Tait, Laura; And Others – 1979
A study of the responses made to problems selected from Raven's Progressive Matrices showed differences in the kinds of errors typically made by eighteen-year-old students. Nine problems were used and the 68 subjects were told to draw their answers on the answer sheets. There were two trials per puzzle. A classification system, devised for errors,…
Descriptors: Adolescents, Age Differences, Cognitive Development, Cognitive Processes
Peer reviewedSebby, Rickard A.; Papini, Dennis R. – Adolescence, 1994
Examined postformal reasoning of young and older adolescents and young adults. Problems known to reflect issues relevant to adolescents, adults, and older adults were presented to 105 subjects. Three age groups differed with respect to perception of problem relevancy. Perceived relevancy appeared to disrupt postformal reasoning among youngest…
Descriptors: Adolescents, Age Differences, College Students, Higher Education
Peer reviewedSternberg, Robert J.; Rifkin, Bathsheva – Journal of Experimental Child Psychology, 1979
Two experiments were conducted to test the generalizability to children of a theory of analogical reasoning processes, originally proposed for adults, and to examine the development of analogical reasoning processes in terms of five proposed sources of cognitive development. (MP)
Descriptors: Age Differences, Cognitive Development, Cognitive Processes, College Students
Peer reviewedBaker-Sennett, Jacquelyn; Ceci, Stephen J. – Journal of Creative Behavior, 1996
Two studies were conducted, one using 80 university students and the other 140 fifth through seventh graders, to examine the relationship between problem-solving strategies (leaping and flexibility) and measures of insight and scholastic aptitude. Relationships among insight, leaping, and quantitative scholastic aptitude were found. A…
Descriptors: Academic Aptitude, Age Differences, Cognitive Processes, Creative Thinking
Peer reviewedHolzman, Thomas G.; And Others – Journal of Educational Psychology, 1983
The cognitive determinants of number series completion performance were studied by presenting a systematic set of problems to college adults and to average- and high-IQ elementary school children. In each group, a combination of process and content-knowledge variables accounted for more than 70 percent of the variance in solution difficulty.…
Descriptors: Age Differences, Cognitive Ability, Difficulty Level, Epistemology
Peer reviewedStone, Beth; Day, Mary Carol – Child Development, 1981
Geometric matrix problems were presented to 11- and 14-year-olds and adults to investigate latency to solution as a function of number of elements (1-3) and of transformations (0-2) that had to be considered for correct solution. At all ages latencies increased as the number of elements and number of transformations increased. (Author/DB)
Descriptors: Adolescents, Age Differences, Children, Cognitive Processes
Peer reviewedBrownell, Gregg; And Others – Journal of Research on Computing in Education, 1993
Describes a study that examined the formal reasoning abilities of 147 preservice students in elementary education enrolled in a computer education course. Use of the Arlin Test of Formal Reasoning (ATFR) is explained, and correlations between students' ages and grade point averages and their scores on the ATFR are discussed. (Contains 22…
Descriptors: Age Differences, Computer Science Education, Correlation, Elementary School Teachers
Sternberg, Robert J.; Nigro, Georgia – 1979
Developmental patterns in the solution of verbal analogies, especially the recognition of higher-order analogical relations, were traced. The investigation sought to: (1) provide new developmental tests of a componential theory of analogical reasoning; (2) identify strategy changes during the transition from midchildhood (grade 3) to adulthood…
Descriptors: Abstract Reasoning, Age Differences, Cognitive Processes, Developmental Stages
Peer reviewedSternberg, Robert J.; Nigro, Georgia – Child Development, 1980
Examines developmental patterns in the solution of verbal analogies. Twenty subjects in each of grades 3, 6, 9, and in college were tested on their relative abilities to solve 180 verbal analogies based on five different verbal relations. (CM)
Descriptors: Age Differences, College Students, Comparative Analysis, Developmental Stages
Wakefield, John F. – 1991
The hypothesis of positive skew in distributions of response to creative thinking tasks was studied. Data were obtained from examinees' responses to problem-solving tasks in three published studies of creative thinking. Subjects included 23 fifth graders (12 females and 11 males), 29 high school students (10 females and 19 males), and 47 female…
Descriptors: Age Differences, College Students, Comparative Analysis, Creative Thinking
Gray, William M.; Rush, Mary Lou – 1986
W. M. Gray's "How is Your Logic?" a Piagetian-based, group-administered written test of cognitive development, and B. Leadbeater's Livian Wars Task, a formal operations-based, written, social-cognition problem were given to 348 college undergraduate and graduate students to investigate the impact of chronological age and amount of formal…
Descriptors: Academic Achievement, Age Differences, Cognitive Ability, Cognitive Development
Moses, Barbara E. – 1980
This investigation analyzed sex-related and age-related differences on spatial visualization tasks, reasoning tasks, and mathematical problem-solving tasks; and the effects instruction in visual thinking would have on these differences. Students in fifth grade, ninth grade, and in college, were tested before and after twelve weeks of instruction…
Descriptors: Abstract Reasoning, Age Differences, Cognitive Tests, Creativity
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