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Camps, Nuria – Online Submission, 2020
The use of visual metaphors has received growing attention in recent years, but their widespread use is not without certain challenges. The most common critique of visual metaphors in teaching indicates that they can be misleading as the meaning attributed by the recipient can be far apart from the intended one. This can make learning less…
Descriptors: Figurative Language, Visualization, Imagination, Visual Perception
Sweeney, Sara K.; Newbill, Phyllis; Ogle, Todd; Terry, Krista – TechTrends: Linking Research and Practice to Improve Learning, 2018
The authors explore how 3D visualizations of historical sites can be used as pedagogical tools to support historical empathy. They provide three visualizations created by a team at Virginia Tech as examples. They discuss virtual environments and how the digital restoration process is applied. They also define historical empathy, explain why it is…
Descriptors: Computer Simulation, Visualization, Empathy, Historic Sites
Laherto, Antti – LUMAT: International Journal on Math, Science and Technology Education, 2018
Informal learning environments such as exhibitions in museums and science centres have the potential to promote public engagement in the societally important fields of nanoscience and nanotechnology (NST). This study contributes to research-based development of an NST exhibition by mapping educational, communicational and museographical challenges…
Descriptors: Science Education, Science Teaching Centers, Museums, Exhibits
Balta, Nuri – Physics Education, 2018
One way to ease the solution of physics problems is to visualize the situation. However, by visualization we do not mean the pictorial representation of the problem. Instead, we mean a sketch for the solution of the problem. In this paper a new approach to solving physics problems, based on decomposing the problem into with and without gravity, is…
Descriptors: Physics, Visualization, Science Instruction, Problem Solving
Buckley, Jeffrey; Seery, Niall; Canty, Donal – Educational Psychology Review, 2018
An abundance of empirical evidence exists identifying a significant correlation between spatial ability and educational performance particularly in science, technology, engineering and mathematics (STEM). Despite this evidence, a causal explanation has yet to be identified. Pertinent research illustrates that spatial ability can be developed and…
Descriptors: Spatial Ability, STEM Education, Intelligence, Definitions
Wind, Stefanie A. – Educational Measurement: Issues and Practice, 2018
In this digital ITEMS module, we introduce the framework of nonparametric item response theory (IRT), in particular Mokken scaling, which can be used to evaluate fundamental measurement properties with less strict assumptions than parametric IRT models. We walk through the key distinction between parametric and nonparametric models, introduce the…
Descriptors: Educational Assessment, Nonparametric Statistics, Item Response Theory, Scaling
Vergara, Diego; Rubio, Manuel Pablo; Lorenzo, Miguel – Education Sciences, 2019
Despite the interesting applications that the PDF-3D offers in teaching, especially for subjects related to spatial comprehension difficulties, such a didactic tool is not well known in the education sector. Thus, a proposal of using PDF-3D in engineering studies is presented in this paper, specifically, in the field of teaching ternary phase…
Descriptors: Spatial Ability, Visualization, Visual Aids, Student Attitudes
Ponce Campuzano, J. C.; Roberts, A. P.; Matthews, K. E.; Wegener, M. J.; Kenny, E. P.; McIntyre, T. J. – International Journal of Mathematical Education in Science and Technology, 2019
In this paper we present two simulations designed with GeoGebra that illustrate dynamically a key concept in Vector Calculus: line integrals of vector fields, along with other associated mathematical properties and applications. Students are not required to know the GeoGebra environment: a user-friendly interface with buttons, functionalities and…
Descriptors: Visualization, Computer Simulation, Calculus, Mathematical Concepts
Kostadinov, Boyan; Thiel, Johann; Singh, Satyanand – PRIMUS, 2019
The goal of this paper is to promote the use of R and Python as high-level, free, open-source programming environments that can be used as a computational and visualization tool for teaching differential equations. Both R and Python also allow for creating reproducible dynamic documents using Markdown, which combines live code, plain text, and…
Descriptors: Mathematics Instruction, College Mathematics, Undergraduate Study, Programming
Caglayan, Günhan – ZDM: The International Journal on Mathematics Education, 2019
The purpose of this research study was to understand how linear algebra students in a university in the United States make sense of subspaces of vector spaces in a series of in-depth qualitative interviews in a technology-assisted learning environment. Fourteen mathematics majors came up with a diversity of innovative and creative ways in which…
Descriptors: College Students, College Mathematics, Majors (Students), Algebra
Taipalus, Toni – Journal of Information Systems Education, 2019
Structured Query Language (SQL) is still the de facto database query language widely used in industry and taught in almost all university level database courses. The role of SQL is further strengthened by the emergence of NewSQL systems which use SQL as their query language as well as some NoSQL systems, e.g., Cassandra and DynamoDB, which base…
Descriptors: Programming Languages, Programming, Computer Science Education, Databases
Patahuddin, Sitti Maesuri; Ramful, Ajay; Lowrie, Tom – Australian Mathematics Education Journal, 2019
Spatial visualisation is an essential component of geometric thinking and measurement sense. It is a particular type of spatial skill that involves manipulation of spatial images and may not be naturally occurring for students. However, research shows that it is malleable and can be developed through instruction. This article presents an…
Descriptors: Spatial Ability, Visualization, Correlation, Mathematics Activities
Guney, Zafer – Cypriot Journal of Educational Sciences, 2019
The purpose of this study is to discuss approaches for developing human-computer interaction (HCI) in educational technology (ET) based on definitions of visual design, learning variables and user-interface design principles in the field of instructional design and technology (IDT). We will do in several stages, first, we will review historical…
Descriptors: Man Machine Systems, Computer Interfaces, Computer System Design, Instructional Design
French, A.; Cullerne, J. P.; Kanchanasakdichai, O. – Physics Education, 2019
This paper develops the ideas of "The Pedagogical Power of Context: Iterative Calculus Methods and the Epidemiology of Eyam" (French "et al." 2018 "J. Phys. Educ."), where we considered the application of the Euler method to solve epidemiological problems. Our purpose was to convey some examples of school level work…
Descriptors: Science Instruction, Physics, Visualization, Calculus
Castro-Alonso, Juan C.; Wong, Mona; Adesope, Olusola O.; Ayres, Paul; Paas, Fred – Educational Psychology Review, 2019
Studies comparing the instructional effectiveness of dynamic versus static visualizations have produced mixed results. In this work, we investigated whether gender imbalance in the participant samples of these studies may have contributed to the mixed results. We conducted a meta-analysis of randomized experiments in which groups of students…
Descriptors: Visualization, Research Methodology, Motion, Biology