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Marley Belot – Online Submission, 2025
Space exploration requires individuals who can think critically, adapt to uncertainty, and learn in cognitively complex environments. This paper examines how Human Systems Engineering (HSE) and cognitive design principles can enhance both astronaut training and STEM education on Earth. The same methodologies that help astronauts manage stress,…
Descriptors: Human Factors Engineering, Cognitive Processes, STEM Education, Aerospace Education
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Jian, Yu-Cin – Journal of Research in Science Teaching, 2022
This study used eye-movement tracking to investigate how students engage with the learning process of reading science articles with or without hands-on manipulation of a pulley system and their influences on learning outcomes. This experiment used a 2 (reading easy or difficult articles) × 2 (with or without hands-on manipulation) between-subject…
Descriptors: Difficulty Level, Undergraduate Students, Eye Movements, Hands on Science
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Zhou, Chuyi; Chai, Chunlei; Liao, Jing – International Journal of Technology and Design Education, 2022
There is limited information about the design process and outcomes of novice industrial designers when working with different levels of problem abstraction. In this paper, we propose a new way of describing the cognitive processes of problem solving based on problem decomposition strategy studies and network-based cognitive maps. An empirical…
Descriptors: Novices, Design, Industrial Arts, Problem Solving
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Wang, Bo; Ginns, Paul; Mockler, Nicole – Educational Psychology Review, 2022
Cognitive load theory's incorporation of evolutionary perspectives has generated several instructional designs based on movement, including the tracing effect, occurring when learners benefit from explicit instructions to trace out specific elements of lesson materials with the index finger. Historical descriptions of children's tracing behaviours…
Descriptors: Cognitive Processes, Difficulty Level, Imagination, Prior Learning
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Lai, Xiaoyan; Wong, Gary Ka-wai – British Journal of Educational Technology, 2022
Computational thinking (CT), which is a cognitive skill used to solve problems with computational solutions, has drawn increasing attention among researchers and practitioners due to the growing recognition of CT competence as a 21st century skill. Collaboration is commonly integrated into CT education to facilitate novice learning, but there is…
Descriptors: Cooperative Learning, Problem Solving, Computation, Thinking Skills
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Cheung, Jeffrey J. H.; Kulasegaram, Kulamakan M. – Advances in Health Sciences Education, 2022
Ensuring trainees develop the flexibility with their knowledge to address novel problems, and to efficiently build upon prior knowledge to learn new knowledge is a common goal in health profession education. How trainees come to develop this capacity to transfer and transform knowledge across contexts can be described by adaptive expertise, which…
Descriptors: Transfer of Training, Allied Health Occupations Education, Knowledge Level, Thinking Skills
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Bhatia, Kush S.; Stack, Austin; Sensibaugh, Cheryl A.; Lemons, Paula P. – CBE - Life Sciences Education, 2022
Research on student thinking facilitates the design of instructional materials that build on student ideas. The pieces framework views student knowledge as consisting of independent pieces that students assemble in fluctuating ways based on the context at hand. This perspective affords important insights about the reasons students think the way…
Descriptors: Cognitive Processes, Undergraduate Students, Introductory Courses, Biology
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Akinci-Ceylan, Secil; Cetin, Kristen S.; Ahn, Benjamin; Surovek, Andrea; Cetin, Bora – Journal of Civil Engineering Education, 2022
Solving ill-structured problems is a complex task that is required of engineers who work in industry. To better prepare undergraduate engineering students for this complex task and their future professional careers, this paper provides an analysis of the results of research focusing on the study of problem-solving processes adopted by civil…
Descriptors: Undergraduate Students, College Faculty, Engineering Education, Engineering
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Cankaya, Ozlem; Aydogan, Nilay – Asian Journal of Education and Training, 2022
The present study aims to investigate the relationship between pre-service science teachers' argumentation skills and cognitive flexibility levels. Within the scope of the study, an argumentation-based science laboratory application was applied to first year science teaching students for 4 weeks. The arguments were assessed by eight faculty…
Descriptors: Preservice Teachers, Science Teachers, Persuasive Discourse, Cognitive Processes
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Antonides, Joseph; Battista, Michael T. – ZDM: Mathematics Education, 2022
Lockwood has argued that taking a set-oriented perspective is critical for successful combinatorial enumeration. To date, however, the research literature has not yet captured the cognitive processes involved in taking such a perspective. In this theoretical paper, we elaborate the constructs of spatial structuring and spatial-numerical linked…
Descriptors: Cognitive Processes, Spatial Ability, Computation, Mathematics Instruction
Reader, Tracey; Larkin, Kevin; Grootenboer, Peter – Mathematics Education Research Group of Australasia, 2023
This conceptual paper discusses two frameworks, developed independently by the lead author, that will provide the conceptual foundation for the identification and evaluation of mental computation strategies students demonstrate during an upcoming research project entitled Mental Computation in Year 5. These frameworks will be used by the lead…
Descriptors: Elementary School Students, Cognitive Processes, Computation, Mathematics Instruction
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Endres, Tino; Lovell, Oliver; Morkunas, David; Rieß, Werner; Renkl, Alexander – British Journal of Educational Psychology, 2023
Background & Aims: Cognitive load theory assumes that the higher the learner's prior knowledge (i.e., the more expert the learner), the lower the intrinsic cognitive load (complexity) experienced for a given problem. While this is the case in many scenarios, there can be cases in which the converse is also true, resulting in more expert…
Descriptors: Prior Learning, Cognitive Processes, Difficulty Level, Problem Solving
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Bülbül, Buket Özüm; Güler, Mustafa – E-Learning and Digital Media, 2023
Geometric habits of mind (GHoM) are the approaches that individuals use to solve geometry problems. This study aimed to determine the effect of dynamic geometry software (DGS) in activating the GHoM of pre-service mathematics teachers. The study was conducted with six teacher candidates who were enrolled in a semester-long course titled…
Descriptors: Cognitive Processes, Problem Solving, Geometry, Computer Software
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Schukajlow, Stanislaw; Kaiser, Gabriele; Stillman, Gloria – Mathematical Thinking and Learning: An International Journal, 2023
Mathematical modeling and applications are an important part of curriculum and considered to be important for students' current and future lives. In this contribution, we focus on mathematical modeling from a cognitive prospective. Following embedding the cognitive perspective within the discourse of mathematical modeling, we describe some of the…
Descriptors: Mathematics Instruction, Metacognition, Mathematical Models, Learning Activities
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Jaffe, Joshua Benjamin; Bolger, Donald Joseph – Educational Psychology Review, 2023
Arithmetic word problems are a staple in mathematical curricula yet give individuals of all ages difficulty. Successful word problem solving requires translating the problem into a symbolic arithmetic format. However, the linguistic component may make problem solving more complex and increase cognitive load, specifically the processes that…
Descriptors: Cognitive Processes, Arithmetic, Word Problems (Mathematics), Problem Solving
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