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Sung, Woonhee; Ahn, Junghyun; Black, John B. – Journal of Research in Childhood Education, 2022
Using robotics and programming, this study investigated the effects of different levels of embodied instruction on the problem-solving, debugging, programming proficiency, self-determination, and self-efficacy of students in ethnically diverse elementary classrooms. The first small-scale, quasi-experimental study involved 37 second-graders, who…
Descriptors: Elementary School Students, Academic Achievement, Student Attitudes, Robotics
Young, Adena E.; Worrell, Frank C. – Gifted Child Quarterly, 2018
Two studies were conducted to examine and compare the construct validity of scores on the Junior Metacognition Awareness Inventory (JMAI) and problem-solving interview protocols. Participants consisted of 183 middle and high school students attending a university summer program for academically talented youth. Study 1 results indicated that JMAI…
Descriptors: Comparative Analysis, Metacognition, Mathematics Instruction, Academically Gifted
Razzouk, Rim; Shute, Valerie – Review of Educational Research, 2012
Design thinking is generally defined as an analytic and creative process that engages a person in opportunities to experiment, create and prototype models, gather feedback, and redesign. Several characteristics (e.g., visualization, creativity) that a good design thinker should possess have been identified from the literature. The primary purpose…
Descriptors: Feedback (Response), Creativity, Problem Solving, Expertise
Gulacar, Ozcan; Bowman, Charles R.; Feakes, Debra A. – Science Education International, 2013
The problem-solving strategies of students enrolled in general chemistry courses have been the subject of numerous research investigations. In most cases, the investigators were interested in the specific areas or concepts that posed the greatest difficulty to a student's success in achieving the correct answer. However, the investigation reported…
Descriptors: Problem Solving, College Students, Chemistry, Science Instruction
Muis, Krista R.; Franco, Gina M. – Metacognition and Learning, 2010
Relations were examined between epistemic profiles, metacognition, problem solving, and achievement in the context of learning in an educational psychology course. Two hundred thirty-one university students completed self-report inventories reflecting their epistemic profiles and use of metacognitive strategies, and were epistemically profiled as…
Descriptors: Educational Psychology, Protocol Analysis, Problem Solving, Metacognition
Jackson, Janna – Teaching Education, 2009
Most teachers only dream of their students spending the amount of motivation, attention, passion, and critical thinking on their classes that some students do playing videogames. This investigation examines the success, pitfalls, and lessons learned from incorporating videogame-like components into an educational technology class. For example,…
Descriptors: Assignments, Video Games, Protocol Analysis, Focus Groups

Lythcott, Jean – Journal of Chemical Education, 1990
Reported is a study designed to improve problem-solving skills of high school chemistry students. Interpretations of the data are presented. Recommendations for improvement in teaching problem solving in chemistry are proposed. (CW)
Descriptors: Academic Achievement, Chemistry, College Science, Critical Thinking

Sawrey, Barbara A. – Journal of Chemical Education, 1990
Compared in this research was the performance of students on numerical versus conceptual chemistry problems at the introductory college level. Separate analyses were done to compare high and low achievers. It was shown that even the upper group of achievers had difficulty with concept questions. (CW)
Descriptors: Academic Achievement, Chemistry, College Science, Critical Thinking

Pickering, Miles – Journal of Chemical Education, 1990
Analyzed was the performance of students on numerical versus conceptual chemistry problems in their freshman general chemistry course and their sophomore organic chemistry course. Data indicated that the ability to solve a problem did not necessarily imply an understanding of the concepts involved. (CW)
Descriptors: Academic Achievement, Chemistry, College Science, Critical Thinking

Lawson, Michael J.; Chinnappan, Mohan – Cognition and Instruction, 1994
The problem-solving performance of high-achieving (HA) and low-achieving (LA) 11th-grade students was compared during solution of geometry problems using a think-aloud procedure. Detailed analysis of problem-solving protocols indicated that HA students not only accessed a greater body of geometrical knowledge but also used that knowledge more…
Descriptors: Academic Achievement, Cognitive Processes, Comparative Analysis, Geometry