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Matisse Poupard; Florian Larrue; Hélène Sauzéon; André Tricot – British Journal of Educational Technology, 2025
Immersive technologies are assumed to have many benefits for learning due to their potential positive impact on optimizing learners' cognitive load and fostering intrinsic motivation. However, despite promising results, the findings regarding the actual impact on learning remain inconclusive, raising questions about the determinants of efficacy.…
Descriptors: Educational Technology, Academic Achievement, Cognitive Processes, Learning Motivation
Neslihan Yondemir Çaliskan; Emine Sendurur – Educational Technology Research and Development, 2025
Based on the assumptions of cognitive load theory, this study aims to utilize the eye movement data collected from multiple experts to scaffold novice graphic designers. The study has two main stages. In the first stage, eye tracking was used to record the eye movements of 7 experts, who covered eight topics explaining how to use Photoshop. The…
Descriptors: Eye Movements, Novices, Expertise, Guidance
Abdelilah El Meniari; Driss Ait Ali; Younes Rami; Laila Arif; Murat Yildirim; Lukasz Szarpak; Mimoune Saidi; Hanane El Ghouat; Mohamed Makkaoui; Amelia Rizzo; Francesco Chiricco; Hicham Khabbache – Journal of Adult and Continuing Education, 2025
Cognizance, or the self-awareness individuals have of their cognitive processes, is a critical factor in adult learning and literacy, which are fundamental for personal and social development. This study aims to explore the psychometric properties of the instrument used and investigate how cognizance affects the academic achievement of new…
Descriptors: Adult Literacy, Academic Achievement, Foreign Countries, Adult Learning
Christine C. A. van Nooijen; Bjorn B. de Koning; Wichor M. Bramer; Anna Isahakyan; Maryam Asoodar; Ellen Kok; Jeroen J. G. van Merrienboer; Fred Paas – Educational Psychology Review, 2024
Visual problem-solving is an essential skill for professionals in various visual domains. Novices in these domains acquire such skills through interactions with experts (e.g., apprenticeships). Experts guide novice visual problem-solving with scaffolding behaviours. However, there is little consensus about the description and classification of…
Descriptors: Cognitive Processes, Difficulty Level, Expertise, Novices
Renske Weeda; Sjaak Smetsers; Erik Barendsen – Computer Science Education, 2024
Background and Context: Multiple studies report that experienced instructors lack consensus on the difficulty of programming tasks for novices. However, adequately gauging task difficulty is needed for alignment: to select and structure tasks in order to assess what students can and cannot do. Objective: The aim of this study was to examine…
Descriptors: Novices, Coding, Programming, Computer Science Education
Abigale Plunk; Amy S. Weitlauf; Zachary Warren; Daniel Levin; Nilanjan Sarkar – Journal of Autism and Developmental Disorders, 2025
This study explores the intersection of Theory of Mind (ToM) abilities and driving performance among novice drivers, with a focus on autistic individuals. The purpose is to investigate how ToM deficits may impact driving behaviors and decision-making, ultimately informing the development of tailored interventions and training programs for autistic…
Descriptors: Theory of Mind, Motor Vehicles, Novices, Autism Spectrum Disorders
Kahn, Joshua D.; Bullis, Michael D. – Leadership and Policy in Schools, 2023
In this integrative literature review, we synthesize the scant literature from the last 40 years of educational research on how school principals make difficult decisions. Reviewing 15 peer-reviewed articles, articles were coded for the methods used and their substantive findings. We review sampling techniques, the types of problems and methods…
Descriptors: Cognitive Processes, Decision Making, Principals, Models
Yushan Xiong; Jialan Liu; Jiejie Lai; Tongyi Zheng; Xuhuai Qu; Qiuye Li; Yi Zhong; Lei Bao; Shaona Zhou – Physical Review Physics Education Research, 2025
This study investigates the cognitive processes of novice students in science learning, with a specific focus on how inhibitory control is employed to overcome a common student misconception about the buoyant force in liquid, which leads to the belief that "the greater the depth an object is in a liquid, the greater the buoyant force it…
Descriptors: Scientific Concepts, Misconceptions, Intervention, Physics
Haavold, Per Øystein; Sriraman, Bharath – ZDM: Mathematics Education, 2022
Even after many decades of productive research, problem solving instruction is still considered ineffective. In this study we address some limitations of extant problem solving models related to the phenomenon of insight during problem solving. Currently, there are two main views on the source of insight during problem solving. Proponents of the…
Descriptors: Creativity, Creative Thinking, Problem Solving, Novices
Rosario Guzman-Jimenez; Dhavit Prem; Alvaro Saldívar; Eduardo Alejandro Escotto-Córdova – Frontline Learning Research, 2025
The concept of number emerges from the interaction of psychological, behavioral, and material elements of numerical cognition, collapsing the distinction between "abstract" and "concrete." This dual nature is evident in the Inca numerical system, where tools like the yupana integrate abstract numerical concepts with concrete…
Descriptors: Indigenous Knowledge, Arithmetic, Mathematics Skills, Spatial Ability
Hao, Xiaoxin; Xu, Zhiyi; Guo, Mingyue; Hu, Yuzheng; Geng, Fengji – International Journal of STEM Education, 2023
Background: Coding has become an integral part of STEM education. However, novice learners face difficulties in processing codes within embedded structures (also termed nested structures). This study aimed to investigate the cognitive mechanism underlying the processing of embedded coding structures based on hierarchical complexity theory, which…
Descriptors: Cognitive Processes, Difficulty Level, Programming, Computer Science Education
Ma, Ning; Qian, Jinglong; Gong, Kaixin; Lu, Yao – Education and Information Technologies, 2023
Computational thinking is an important competence for learners in the twenty-first century. As an effective approach for cultivating competence in computational thinking, programming education has been extended from college to elementary school teaching. However, it is challenging to engage beginners in programming in elementary school education.…
Descriptors: Elementary School Students, Programming, Computer Science Education, Novices
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
Schwarts, Gil; Elbaum-Cohen, Avital; Pöhler, Birte; Prediger, Susanne; Arcavi, Abraham; Karsenty, Ronnie – Educational Studies in Mathematics, 2023
Professional development (PD) courses are the main context for mathematics teachers' lifelong learning. Leaders with expertise are needed to facilitate these courses; thus, there is a growing interest in understanding the nature of this profession, its core practices, and the challenges it entails. This paper focuses on a specific group of…
Descriptors: Experienced Teachers, Mathematics Teachers, Novices, Facilitators (Individuals)
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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