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Haverkamp, Nils; Pusch, Alexander; Heusler, Stefan; Gregor, Markus – Physics Education, 2022
Quantum technology is an emerging field of physics and engineering and important applications are expected in quantum computing, quantum sensing, quantum cryptography, quantum simulation, and quantum metrology. Thus the need for education in this field is increasing, while still remaining challenging. While the need for basic education in quantum…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Science Experiments
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Reinwein, Joachim; Tassé, Serge – Journal of Psycholinguistic Research, 2022
Are oral sentences accompanied by pictures easier to understand than written sentences accompanied by the same pictures? This question--intensely discussed for more than two decades in educational, psychological, and psycholinguistic research in terms of "modality effect in multimedia learning," "split-attention effect," or…
Descriptors: Psycholinguistics, Task Analysis, Sentences, Illustrations
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Sillanpää, Taina; Visuri, Fredrika; Ruokonen, Inkeri – Global Education Review, 2022
Historically, Finnish early childhood education has been largely based on Friedrich Froebel's pedagogy. However, Froebelian pedagogy is no longer as well known in Finland as it once was. We at the Kindergarten Museum in Helsinki wanted to increase awareness of the Froebelian tradition. Together with artist Alexander Reichstein, we came up with the…
Descriptors: Foreign Countries, Learning Processes, Play, Instructional Design
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Shongwe, Benjamin – International Journal of Mathematical Education in Science and Technology, 2022
This study used a modified mathematical knowledge for teaching (MKT) framework to compare the "common content knowledge" (CCK) of two groups of purposively selected pre-service primary mathematics teachers (n = 86) in relation to spatial visualization. Specifically, thirty-five pre-service teachers (n[subscript 1] = 35) with a pure…
Descriptors: Mathematics Skills, Pedagogical Content Knowledge, Spatial Ability, Visualization
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Liu, Saifang; Cheng, Chen; Wu, Peiqian; Zhang, Liming; Wang, Zhengjun; Wei, Wenjun; Chen, Yuan; Zhao, Jingjing – Journal of Learning Disabilities, 2022
A number of previous studies have identified cognitive deficits in developmental dyscalculia (DD). Yet, most of these studies were in alphabetic languages, whereas few of them examined Chinese DD. Here, we conducted a study aiming to determine the cognitive factors associated with DD in Chinese children. Five candidate cognitive factors of…
Descriptors: Foreign Countries, Learning Disabilities, Phonological Awareness, Spatial Ability
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Badmus, Olalekan Taofeek; Jita, Loyiso C. – Journal of Turkish Science Education, 2022
This study investigated pedagogical implication of spatial visualization as correlate of students' achievement in physics. Ex post facto research of the co-relational type with 857 senior secondary school three (S. S. 3) participants comprising of male and female students from both public and private-schools from Kwara State, Nigeria. Four…
Descriptors: Spatial Ability, Visualization, Science Achievement, Physics
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Simon, Tünde; Biró, Ildikó; Kárpáti, Andrea – Journal of Intelligence, 2022
In this paper, we describe subskills of visual communication based on the skill structure outlined in the Common European Framework of Visual Literacy. We have developed this Framework further through assessing the development of subskills related to visual communication in the "produce" and "respond" domains of CEFR-VC in…
Descriptors: Visual Literacy, Communication Skills, Skill Development, Elementary School Students
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Kristin Michod Gagnier; Steven J. Holochwost; Kelly R. Fisher – Journal of Research in Science Teaching, 2022
Fostering students' spatial thinking skills holds great promise for improving Science, Technology, Engineering, and Mathematics (STEM) education. Recent efforts have focused on the development of classroom interventions to build students' spatial skills, yet these interventions will be implemented by teachers, and their beliefs and perceptions…
Descriptors: Spatial Ability, STEM Education, Elementary School Teachers, Teacher Attitudes
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Elisa Serrano-Ausejo; Eva Mårell-Olsson – Education and Information Technologies, 2024
Organic chemistry, also known as stereochemistry, is a subject considered to be notably complex for students to understand. Knowledge construction in stereochemistry might demand the ability to imagine or visualise the distribution of atoms. For students with insufficient spatial ability, this could be confusing. This study aimed to explore…
Descriptors: Organic Chemistry, Computer Simulation, Physical Environment, Simulated Environment
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Rashmi Aggarwal, Editor; Prachi Gupta, Editor; Satinder Singh, Editor; Rajni Bala, Editor – IGI Global, 2024
In the field of education, the quick progression of technologies poses both unprecedented challenges and unparalleled opportunities. As our classrooms undergo a large shift, traditional practices are being questioned, demanding a reevaluation of how we teach, learn, and prepare the leaders of tomorrow. The consensus is clear: for our students to…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
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Fatma Karaismailoglu; Mehtap Yildirim – Research in Science & Technological Education, 2024
Background: Spatial ability has an important place in science education, which is effective in raising future scientists. Although not in large numbers, studies show that teachers' spatial abilities somehow affect their teaching practices in the classroom and thus the spatial abilities of their students. Purpose: This study aimed to investigate…
Descriptors: Models, Educational Technology, Computer Simulation, Flipped Classroom
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Joni M. Lakin; Jon Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David Uttal – Grantee Submission, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
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Joni M. Lakin; Jonathan Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David H. Uttal – Gifted Child Today, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
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Marie Sagesse Uwurukundo; Jean François Maniraho; Michael Tusiime; Irénée Ndayambaje; Vedaste Mutarutinya – Education and Information Technologies, 2024
It has been discovered that incorporating technology into geometry instruction improves students' abilities and attitudes. GeoGebra Software is effective at motivating teachers to use technology as a supplement to enhance students' mathematical learning potential. The current study sought to ascertain the effects of GeoGebra software on secondary…
Descriptors: Secondary School Students, Secondary School Teachers, Geometry, Student Attitudes
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Sanchez, Christopher A. – Applied Cognitive Psychology, 2019
Classic studies in cognition have demonstrated that the use of appropriate memory mnemonics can reliably increase recall performance. However, is the facilitative effect of mnemonics consistent across all individuals? As some mnemonics explicitly contain a large visuospatial component, does normal variance in visuospatial aptitudes predict the…
Descriptors: Spatial Ability, Mnemonics, Recall (Psychology), Performance Factors
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