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| Group Embedded Figures Test | 4 |
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Peer reviewedMacPherson, Randall T. – Journal of Industrial Teacher Education, 1998
Cognitive technical skills assessments, the Group Embedded Figures Test, Watson-Glaser Critical Thinking assessment, and a problem-solving inventory were completed by 15 maintenance technicians. Near-transfer problem-solving skills were predicted by cognitive ability, years of experience, and critical thinking. Field dependence/independence and…
Descriptors: Cognitive Ability, Cognitive Style, Paraprofessional Personnel, Problem Solving
Peer reviewedNiaz, Mansoor – International Journal of Science Education, 1988
Investigated were the relation between functional M-capacity and student performance in solving chemistry problems of increasing M-demand. Student performance decreased as the M-demand of the problems increased. (Author/YP)
Descriptors: Chemistry, Cognitive Ability, Cognitive Measurement, Cognitive Structures
Fritz, Robert L. – 1992
A study examined two dimensions of higher-order problem-solving skills: the ability to solve problems in an embedded context and the attitudes and preferences toward problem solving that suggest vocational self-understanding. The variables of gender and field-dependence cognitive style were used. Subjects were 238 secondary school marketing…
Descriptors: Cognitive Ability, Cognitive Style, Critical Thinking, Employment Qualifications
Peer reviewedNiaz, Mansoor; Robinson, William R. – Research in Science and Technological Education, 1992
Compares performances of students on gas-law problems that require two distinct approaches, either the algorithmic technique or the conceptual gestalt. Indicates that student effectiveness is considerably different utilizing each approach and that training or experience with the algorithm process should not be expected to facilitate the…
Descriptors: Algorithms, Chemistry, Cognitive Ability, Cognitive Style


