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Moore, Tamara J.; Brophy, Sean P.; Tank, Kristina M.; Lopez, Ruben D.; Johnston, Amanda C.; Hynes, Morgan M.; Gajdzik, Elizabeth – Journal of Science Education and Technology, 2020
Computational thinking requires high cognitive load as students work to manage multiple tasks in their problem-solving environment. Through research in K-2 classrooms on computational thinking, we noticed that students lack the representational fluency needed to move from one form to another--such as moving from physical to more abstract…
Descriptors: Thinking Skills, Grade 2, Task Analysis, Elementary School Students
Lege, Ryan; Bonner, Euan – JALT CALL Journal, 2020
Virtual Reality (VR) has made significant inroads into both the consumer and professional sectors. As VR has matured as a technology, its overall practicality for use in education has also increased. However, due to the rapid evolution of the technology, the educational field struggles to stay informed of the latest advancements, changing…
Descriptors: Computer Simulation, Teaching Methods, Classification, Distance Education
Finke, Sabrina; Kemény, Ferenc; Sommer, Markus; Krnjic, Vesna; Arendasy, Martin; Slany, Wolfgang; Landerl, Karin – Computer Science Education, 2022
Background: Key to optimizing Computational Thinking (CT) instruction is a precise understanding of the underlying cognitive skills. Román-González et al. (2017) reported unique contributions of spatial abilities and reasoning, whereas arithmetic was not significantly related to CT. Disentangling the influence of spatial and numerical skills on CT…
Descriptors: Spatial Ability, Cognitive Ability, Abstract Reasoning, Arithmetic
Toomey, Natalie; Heo, Misook – Instructional Science: An International Journal of the Learning Sciences, 2019
The goal of this study was to investigate cognitive style (the visualizer-verbalizer dimension) and cognitive ability (spatial and verbal abilities) in terms of corresponding resource use behavior. The study further examined the potential link between cognitive style and cognitive ability based on observable behavior. A total of 67 university…
Descriptors: Cognitive Ability, Cognitive Style, Spatial Ability, Verbal Ability
Amevor, G.; Bayaga, Anass; Bossé, Michael J. – Contemporary Educational Technology, 2021
Dynamic visual tools such as MATLAB have inbuilt features which are believed to be able to empower students to learn through the visualisation of three-dimensional objects. While student learning through MATLAB has been investigated regarding students in urban settings, only a handful of studies have investigated how MATLAB can assist students in…
Descriptors: Educational Technology, Technology Uses in Education, Visual Aids, Spatial Ability
Wang, Tzu-Ling; Tseng, Yi-Kuan – Journal of Computer Assisted Learning, 2020
The purpose of this study was to investigate not only the effectiveness of dynamic versus static visualizations on learning star motions but also the influence of students' spatial abilities with these two types of visualizations on their learning. We assigned 155 fifth-grade students to either a dynamic or a static condition. We used a science…
Descriptors: Teaching Methods, Computer Assisted Instruction, Spatial Ability, Science Achievement
Bower, Corinne; Zimmermann, Laura; Verdine, Brian; Toub, Tamara Spiewak; Islam, Siffat; Foster, Lindsey; Evans, Natalie; Odean, Rosalie; Cibischino, Amanda; Pritulsky, Calla; Hirsh-Pasek, Kathy; Golinkoff, Roberta Michnick – Developmental Psychology, 2020
Spatial skills are associated with mathematics skills, but it is unclear if spatial training transfers to mathematics skills for preschoolers, especially from underserved communities. The current study tested (a) whether spatial training benefited preschoolers' spatial and mathematics skills, (b) if the type of feedback provided during spatial…
Descriptors: Preschool Children, Spatial Ability, Feedback (Response), Transfer of Training
Birney, Damian Patrick – New Directions for Child and Adolescent Development, 2015
Whether fluid cognitive functions are malleable has been a topic of ongoing debate for at least the past 100 years. Ever-evolving technology has led to new and diverse fields of investigation entering this debate. There are significant advantages to be gained by integrating different scientific paradigms, but there are also significant challenges.…
Descriptors: Interdisciplinary Approach, Learning Strategies, Learning Processes, Spatial Ability
Johnson, Heather Lynn; McClintock, Evan; Hornbein, Peter – ZDM: The International Journal on Mathematics Education, 2017
Using an actor-oriented perspective on transfer, we report a case of a student's transfer of covariational reasoning across tasks involving different backgrounds and features. In this study, we investigated the research question: How might a student's covariational reasoning on Ferris wheel tasks, involving attributes of distance, width, and…
Descriptors: Task Analysis, Transfer of Training, Learning Strategies, Thinking Skills
Squires, David – Journal of Educational Technology, 2017
Mobile technology is one of the fastest developing communications tools in the history of humankind. Perhaps now more than ever, one of the biggest questions educators and instructors face is how to engage learners in the digital age as mobile technology rapidly evolves. Current research indicates that Augmented Reality (AR) mobile learning…
Descriptors: Computer Simulation, Educational Technology, Technology Uses in Education, Telecommunications
Cromley, Jennifer G.; Booth, Julie L.; Wills, Theodore W.; Chang, Briana L.; Tran, Nhi; Madeja, Michael; Shipley, Thomas F.; Zahner, William – Mathematical Thinking and Learning: An International Journal, 2017
Spatial skills have been shown in various longitudinal studies to be related to multiple science, technology, engineering, and math (STEM) achievement and retention. The specific nature of this relation has been probed in only a few domains, and has rarely been investigated for calculus, a critical topic in preparing students for and in STEM…
Descriptors: Spatial Ability, Regression (Statistics), STEM Education, Majors (Students)
Barner, David; Alvarez, George; Sullivan, Jessica; Brooks, Neon; Srinivasan, Mahesh; Frank, Michael C. – Child Development, 2016
Mental abacus (MA) is a technique of performing fast, accurate arithmetic using a mental image of an abacus; experts exhibit astonishing calculation abilities. Over 3 years, 204 elementary school students (age range at outset: 5-7 years old) participated in a randomized, controlled trial to test whether MA expertise (a) can be acquired in standard…
Descriptors: Mathematics Education, Randomized Controlled Trials, Spatial Ability, Mental Computation
Andersen, Lori – Roeper Review, 2014
Visual-spatial ability is a multifaceted component of intelligence that has predictive validity for future achievement in science, technology, engineering, and mathematics (STEM) occupations. Although identification and development of STEM talent is a national priority, visual-spatial ability is rarely measured and relatively neglected in gifted…
Descriptors: Visual Perception, Spatial Ability, Intelligence, STEM Education
Yinger, Olivia Swedberg – International Journal of Music Education, 2014
As people age, they naturally experience sensory, perceptual, and cognitive changes. Many of these changes necessitate adaptations in designing programs for older adults. Choral singing is an activity that has many potential benefits for older adults, yet the rehearsal environment, presentation style, and content of material presented may need to…
Descriptors: Singing, Older Adults, Gerontology, Cognitive Ability
Cakmak, Sedanur; Isiksal, Mine; Koc, Yusuf – Journal of Educational Research, 2014
The authors' purpose was to investigate the effect of origami-based instruction on elementary students' spatial ability. The students' self-reported perceptions related to the origami-based instruction were also examined. Data was collected via purposive sampling techniques from students enrolled in a private elementary school. A spatial ability…
Descriptors: Spatial Ability, Teaching Methods, Elementary School Students, Student Attitudes