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Nagaoka, Shin-ichi; Kokubo, Tatsunobu; Teramae, Hiroyuki; Nagashima?, Umpei – Journal of Chemical Education, 2018
At an advanced stage of learning quantum chemistry, undergraduate students usually encounter simple Hückel-molecular-orbital (HMO) theory, whose primitive approach gives very useful insight into the electronic structure of p-conjugated molecules. However, on one hand, computational HMO software, when programmed without using molecular symmetry,…
Descriptors: Visualization, Chemistry, Science Instruction, Molecular Structure
Sokolowski, Andrzej – IAFOR Journal of Education, 2018
The current study provides a meta-analysis of global research on using representations to support the learning of mathematics in Pre-K through Grade 5. A total of 13 primary studies encompassing 1,941 subjects was analyzed. The weighted mean effect size for the 13 studies was reported to be ES = 0.53 (SE = 0.05). A 95% confidence interval around…
Descriptors: Mathematics Instruction, Elementary School Mathematics, Mathematical Concepts, Concept Formation
Karaoglu, Baris; Turan, Mehmet Behzat; Polat, Yahya – Online Submission, 2018
The aim of this research is to determine the relationship between mental endurance and leadership levels of the candidates who are studying in Erciyes University School of Physical Education and Sports Inspection. The student's universe consists of 436 students of Physical Education and Sports. As means of data collection in the survey were used…
Descriptors: Resilience (Psychology), Undergraduate Students, Foreign Countries, Physical Education
Ekici, Summani; Irez, Gonul Babayigit; Saygin, Ozcan; Goksel, Ali Gurel; Yildiz, Yasin – Online Submission, 2018
Spatial skill is the ability to move or reconstruct objects and components of one or more parts in three-dimensional space in their mind. In other words, it is defined as the mental arrangement of spatial skills objects and their parts in two-dimensional and three-dimensional space. 500 volunteer students included from Faculty of Education Primary…
Descriptors: College Students, Preservice Teachers, Spatial Ability, Anxiety
Lindelani Mnguni – Journal of Baltic Science Education, 2018
The use of visual models in teaching, learning and research has increased. Consequently, students have to develop various new competencies including visual literacy in order to learn efficiently. However, visual literacy among biochemistry students is not well documented. Using quantitative research methodology, the current research was aimed at…
Descriptors: Biochemistry, Undergraduate Students, Visual Literacy, Spatial Ability
Jason Robert Murphy – ProQuest LLC, 2018
Implemented in 2013, the Local Control Funding Formula (LCFF) requires Local Education Agencies (LEA's) to engage in a continuous improvement process that identifies actions that extend and improve services for targeted student groups. The vision of the LCFF is that all stakeholder groups including Staff (certificated, classified, management and…
Descriptors: Data, Visualization, Stakeholders, Access to Information
Haciomeroglu, Erhan Selcuk; Haciomeroglu, Guney – International Journal of Progressive Education, 2020
The present study sought to examine mathematical performance of students with different learning preferences in traditionally taught first semester calculus as well as its relationship with learning preference, spatial ability, and verbal-logical reasoning ability. Data were collected from 86 students enrolled in two sections of first semester…
Descriptors: Mathematics Achievement, Performance Factors, Cognitive Style, Preferences
Argu¨ello, Jose´ M.; Dempski, Robert E. – Journal of Chemical Education, 2020
Facile visualization of biomolecules is an essential component of the undergraduate biochemistry curriculum. In the past, a number of tools have been used to display biomolecules. More recently, the advent of greater accessibility to virtual reality (VR) and augmented reality (AR) programs has created a new mechanism to visualize biomolecules.…
Descriptors: Visualization, Undergraduate Students, Biochemistry, Science Instruction
Gonzalez, Alexis A.; Lizana, Pablo A.; Pino, Sonia; Miller, Brant G.; Merino, Cristian – Advances in Physiology Education, 2020
The integrated mechanisms of heart contraction are some of the most complex processes for undergraduate biomedical students to understand. Visual models have the potential to enhance learning environments by providing visual representations of complex mechanisms. Despite their benefits, the use of visual models in undergraduate classrooms is still…
Descriptors: Computer Simulation, Physiology, Biomedicine, Medical Students
Hudiburgh, Lynette M.; Garbinsky, Diana – Journal of Statistics Education, 2020
Although the use of tables, graphs, and figures to summarize information has long existed, the advent of the big data era and improved computing power has brought renewed attention to the field of data visualization. As such, it is crucial that introductory statistics courses train students to become critical authors and consumers of data…
Descriptors: Statistics Education, Data Analysis, Visualization, Teaching Methods
Gandhi, Heta A.; Jakymiw, Sebastian; Barrett, Rainier; Mahaseth, Harshita; White, Andrew D. – Journal of Chemical Education, 2020
Three-dimensional visualization of molecular simulations in virtual reality (VR) is an emerging teaching tool in chemical education. This work describes a VR application which can generate a 3D molecular dynamics (MD) simulation from arbitrary molecular structures and renders that MD simulation trajectory on a VR headset in real-time. This system…
Descriptors: Interaction, Computer Simulation, Visualization, Organic Chemistry
Moritz, Julia; Meyerhoff, Hauke S.; Schwan, Stephan – Journal of Educational Psychology, 2020
Previous research has demonstrated that cognitive offloading (i.e., externalizing mental processes) is useful for immediate problem solving. However, long-term effects of cognitive offloading on subsequent problem solving without offloading are remarkably understudied. Our main goal was to investigate the effects of representation control (i.e.,…
Descriptors: Cognitive Processes, Task Analysis, Problem Solving, Visualization
McNeal, Karen S.; Ryker, Katherine; Whitmeyer, Shelley; Giorgis, Scott; Atkins, Rachel; LaDue, Nicole; Clark, Christine; Soltis, Nick; Pingel, Thomas – Journal of Geography in Higher Education, 2020
We developed and tested different pedagogical treatments using an Augmented Reality (AR) Sandbox to teach introductory geoscience students about reading topographic maps at five institutions in both pilot and full implementation studies. The AR Sandbox treatments were characterized as 1) unstructured play, 2) a semi-structured lesson, and 3) a…
Descriptors: Active Learning, Inquiry, Undergraduate Students, Computer Simulation
Suárez-Gómez, Andrés-David; Pérez-Holguín, Wilson Javier – Journal of Technology and Science Education, 2020
Educational robotics has become one of the most effective methods to teach STEM concepts in a practical and didactic way at all educational level. In this context, the LEGO Mindstorms robotic platforms have been widely used due to their versatility ease of use and modularity. Despite this, most of the papers focus on K-12 and undergraduate levels,…
Descriptors: Visualization, Teaching Methods, Educational Experience, Mathematics Instruction
Martina Angela Rau; Will Keesler; Ying Zhang; Sally Wu – IEEE Transactions on Learning Technologies, 2020
Instruction in most STEM domains uses visuals to illustrate complex problems. During problem solving, students often manipulate and construct visuals. Traditionally, students draw visuals on paper and receive delayed feedback from an instructor. Educational technologies have the advantage that they can provide immediate feedback on students'…
Descriptors: Visualization, Educational Technology, Chemistry, STEM Education

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