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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
Lai, Chiu-Lin; Hwang, Gwo-Jen – Interactive Learning Environments, 2015
In this study, a spreadsheet-based visualized Mindtool was developed for improving students' learning performance when finding relationships between numerical variables by engaging them in reasoning and decision-making activities. To evaluate the effectiveness of the proposed approach, an experiment was conducted on the "phenomena of climate…
Descriptors: Spreadsheets, Visual Aids, Visualization, Decision Making Skills
Ranellucci, John; Muis, Krista R.; Duffy, Melissa; Wang, Xihui; Sampasivam, Lavanya; Franco, Gina M. – British Journal of Educational Psychology, 2013
Background: Research is needed to explore conceptual change in relation to achievement goal orientations and depth of processing. Aims: To address this need, we examined relations between achievement goals, use of deep versus shallow processing strategies, and conceptual change learning using a think-aloud protocol. Sample and Method:…
Descriptors: Goal Orientation, Academic Achievement, Cognitive Processes, Protocol Analysis
Peters, Erin E.; Kitsantas, Anastasia – Educational Psychology, 2010
The purpose of the present study is to examine the effectiveness of a metacognitive prompts intervention-science (MPI-S), which is based on the nature of science with 162 eighth-grade science students. It was hypothesised that students exposed to the intervention will show higher levels of content knowledge and knowledge about the nature of…
Descriptors: Experimental Groups, Intervention, Scientific Principles, Metacognition
Peer reviewedLawson, 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

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