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Slavit, David; Lesseig, Kristin; Simpson, Amber – Journal of Pedagogical Research, 2022
The goal of this paper is to share an analytic framework for understanding Students? Ways of Thinking (SWoT) in STEM-rich learning environments. Before revealing our refined coding framework, we detail the nature of our collaborations and the various analytic decisions that led to its formation. These collaborations supported our collective…
Descriptors: Thinking Skills, STEM Education, Cognitive Processes, Models
Selena Steinberg; Melissa Gresalfi; Lauren Vogelstein; Corey Brady – Journal of Research on Technology in Education, 2024
This paper considers how a curricular design that integrated computer programming and creative movement shaped students' engagement with computing. We draw on data from a camp for middle schoolers, focusing on an activity in which students used the programming environment NetLogo to re-represent their physical choreography. We analyze the extent…
Descriptors: Dance, Programming, Computation, Computer Simulation
Anna Bloodworth; AnnaMarie Conner; Claire Miller; Lorraine Franco; Timothy Foutz; Roger B. Hill – Journal of Technology Education, 2023
Drawing on research in mathematics and science education that has supported student higher-level thinking in K-12 classrooms, we sought to classify the ways of thinking and reasoning supported by robotics coding tasks. As part of a larger project, we examined coding tasks implemented in elementary school classrooms and analyzed ways of thinking…
Descriptors: Elementary Education, Robotics, Coding, Logical Thinking
Iseli, Markus; Feng, Tianying; Chung, Gregory; Ruan, Ziyue; Shochet, Joe; Strachman, Amy – Grantee Submission, 2021
Computational thinking (CT) has emerged as a key topic of interest in K-12 education. Children that are exposed at an early age to STEM curriculum, such as computer programming and computational thinking, demonstrate fewer obstacles entering technical fields. Increased knowledge of programming and computation in early childhood is also associated…
Descriptors: Computation, Thinking Skills, STEM Education, Coding
Calder, Nigel – Mathematics Education Research Group of Australasia, 2022
This paper reports on teachers' perceptions of students learning as part of a project examining teacher practice and student learning when using "ScratchMaths" in their classroom programmes. The project used design-based methodology, incorporating video-recorded classroom excerpts; teacher interviews; and teacher analysis and review of…
Descriptors: Elementary School Students, Mathematics Instruction, Coding, Cognitive Processes
Wang, Lin; Shi, Donglin; Geng, Fengji; Hao, Xiaoxin; Chanjuan, Fu; Li, Yan – Journal of Educational Research, 2022
Coding learning involves cognitive control ability that enables children to coordinate behaviors according to internally maintained goals. However, such ability is still developing during early childhood and cannot reach maturity at least until late adolescence. This study aimed to test whether integrating cognitive control strategies into online…
Descriptors: Cognitive Ability, Cognitive Processes, Cognitive Development, Self Control
Strimel, Greg J.; Kim, Eunhye; Grubbs, Michael E.; Huffman, Tanner J. – International Journal of Technology and Design Education, 2020
Design within primary and secondary schools has been increasingly emphasized over the past decade. As a response to this increased interest, qualitative research examining students' cognitive processes involved in the practices of design has been on the rise. These studies have commonly employed the concurrent think-aloud research methodology to…
Descriptors: Meta Analysis, Elementary School Students, Secondary School Students, Cognitive Processes
Kim, JongHan – Creativity Research Journal, 2015
Studies in embodied cognition show that physical sensations, such as touch and movement, influence cognitive processes. Two studies were conducted to test whether squeezing a soft versus a hard ball facilitates different types of creativity. Squeezing a malleable ball would increase divergent creativity by catalyzing multiple or alternative ideas,…
Descriptors: Creativity, Physical Activities, Motion, Cognitive Processes
Strawhacker, Amanda; Bers, Marina Umaschi – Educational Technology Research and Development, 2019
Computer programming for young children has grown in popularity among both educators and product developers, but still relatively little is known about what skills children are developing when they code. This study investigated N = 57 Kindergarten through second grade children's performance on a programming assessment after engaging in a 6-week…
Descriptors: Coding, Programming, Computer Science Education, Kindergarten
Weinberg, Paul J. – Journal of Pre-College Engineering Education Research, 2017
Mechanistic reasoning is an epistemic practice central within science, technology, engineering, and mathematics disciplines. Although there has been some work on mechanistic reasoning in the research literature and standards documents, much of this work targets domain-general characterizations of mechanistic reasoning; this study provides…
Descriptors: Thinking Skills, STEM Education, Item Response Theory, Scientific Concepts
Hunt, Jessica H.; Empson, Susan B. – Learning Disability Quarterly, 2015
Little to no information exists explaining the nature of conceptual gaps in understanding fractions for students with learning disabilities (LD); such information is vital to practitioners seeking to develop instruction or interventions. Many researchers argue such knowledge can be revealed through student's problem-solving strategies. Despite…
Descriptors: Learning Disabilities, Mathematics Instruction, Problem Solving, Elementary School Students
Syed, M. Qasim – Journal of College Teaching & Learning, 2015
Students in first-year physics courses generally focus on hunting for suitable equations and formulas when tackling a variety of physical situations and physics problems. There is a need for a framework that can guide them to disciplinary ways of thinking and help them begin to think like physicists. To serve this end, in this study, a framework…
Descriptors: Physics, Science Instruction, Engineering Education, Energy
Halamish, Vered; Nussinson, Ravit; Ben-Ari, Liat – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2013
Metamemory judgments may rely on 2 bases of information: subjective experience and abstract theories about memory. On the basis of construal level theory, we predicted that psychological distance and construal level (i.e., concrete vs. abstract thinking) would have a qualitative impact on the relative reliance on these 2 bases: When considering…
Descriptors: Experimental Psychology, Memory, Prediction, Proximity
Yuen, Timothy T.; Robbins, Kay A. – ACM Transactions on Computing Education, 2014
Critical thinking, problem solving, the use of tools, and the ability to consume and analyze information are important skills for the 21st century workforce. This article presents a qualitative case study that follows five undergraduate biology majors in a computer science course (CS0). This CS0 course teaches programming within a data-driven…
Descriptors: Qualitative Research, Critical Thinking, Thinking Skills, Problem Solving
Sun, Lingyun; Xiang, Wei; Chai, Chunlei; Wang, Changlu; Liu, Zheng – International Journal of Technology and Design Education, 2013
Sketching is widely used as a creative tool, playing a significant role in industrial design. Designers commonly use sketching to generate and evaluate ideas, leading to subsequent development of the most promising ideas. The current study examined the use of text in the idea generation sketching process among novices and experts. The…
Descriptors: Industrial Education, Design, Correlation, Brain Hemisphere Functions
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