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Pirolli, Peter L.; Anderson, John R. – 1984
This study reports two experiments which indicate that the processes of providing subjects with insightful representations of example programs and guiding subjects through an "ideal" problem solving strategy facilitate learning. A production system model (GRAPES) has been developed that simulates problem-solving and learning in the…
Descriptors: Cognitive Structures, Computer Assisted Instruction, Computer Science Education, Computer Simulation
Peer reviewedGrandgenett, Neal; Thompson, Ann – Journal of Educational Computing Research, 1991
Describes a study conducted at Iowa State University that investigated the effects of using guided programing instruction to train analogical reasoning. Two groups of students are compared who received different types of programing instruction, and the far transfer and the near transfer of instruction are explored. (35 references) (LRW)
Descriptors: Analogy, Analysis of Variance, Comparative Analysis, Computer Assisted Instruction
Chin, John P.; Zecker, Steven G. – 1985
This experiment examined the relationship between computer programming and the following factors: mathematical ability, locus of control, introversion/extraversion, anxiety, and task time allocation. The programming performance of 14 male and 18 female students in a college-level introductory computer science course was measured by means of a math…
Descriptors: Computer Science Education, Computer Software, Correlation, Higher Education
Peer reviewedMadeo, Laurence A.; Bird, David A. – Journal of Research on Computing in Education, 1990
Discussion of the benefits of allowing programers to use their own words in programing focuses on a study of graduate students that tested whether an experimental group who specified their own operation codes performed better than a control group who used fixed codes. The results of regression analyses are discussed, and future research needs are…
Descriptors: Academic Achievement, Aptitude Treatment Interaction, Computer Assisted Instruction, Computer Science Education
Goossens, J. L. M.; And Others – 1971
A method to calculate the need for academic staff per faculty, based on educational programs and numbers of students, is described which is based on quantitative relations between programs, student enrollment, and total budget. The model is described schematically and presented in a mathematical form adapted to computer processing. Its application…
Descriptors: College Administration, Conference Reports, Data Processing, Educational Policy
Peer reviewedCafolla, Ralph – Journal of Educational Technology Systems, 1988
Describes a study designed to determine if college students' success in writing computer programs is related to level of cognitive development as described by Piaget, verbal ability, and mathematics reasoning. Regression analysis showed that level of cognitive development, when combined with verbal reasoning, is linearly predictive of programming…
Descriptors: Academic Achievement, Analysis of Variance, Cognitive Development, Computer Science Education
Peer reviewedLeso, Tim; Peck, Kyle L. – Journal of Educational Computing Research, 1992
Describes a study of undergraduates that was conducted to describe differences in anxiety in students entering two computer courses (i.e., a problem-solving and programing course and a software applications course) and to assess changes in anxiety levels attributed to each course. Further research is suggested. (19 references) (LRW)
Descriptors: Analysis of Variance, Change, Computer Assisted Instruction, Computer Science Education
Peer reviewedVan Merrienboer, Jeroen J. G.; De Croock, Marcel B. M. – Journal of Educational Computing Research, 1992
Discusses strategies for teaching elementary computer programing and describes a study that used two instructional strategies in a computer-based training program designed to teach turtle graphics programing techniques to novice undergraduate students. Learning activities that emphasized either the completion of existing programs or the generation…
Descriptors: Authoring Aids (Programing), Comparative Analysis, Computer Assisted Instruction, Computer Science Education


