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Evelyn Abagayle Boyd; Kelly Best Lazar; Matthew Voigt – Journal of Geoscience Education, 2024
As a response to the increased need for humanization and representation in STEM, a set of open-source, customizable icons was developed using stackable vector graphics to allow participants to design their own research icons. These icons have the potential to both grant research participant's greater agency in their representation and attempt to…
Descriptors: Participant Characteristics, Personal Autonomy, Earth Science, Visualization
Ilyse Resnick; Elizabeth Louise Chapman; Thomas F. Shipley – Journal of Science Education and Technology, 2024
Visual representations of data are widely used for communication and understanding, particularly in science, technology, engineering, and mathematics (STEM). However, despite their importance, many people have difficulty understanding data-based visualizations. This work presents a series of three studies that examine how understanding time-based…
Descriptors: Time Perspective, Graphs, Visual Aids, Visualization
Mattox, Stephen R.; Duda, Stephanie – Science Teacher, 2022
Permafrost is any soil or surface deposit in an Arctic or alpine region at some depth below the surface at which the temperature has remained below zero degrees Celsius (32 degrees Fahrenheit) continuously for a long period of time. The amount of carbon dioxide and methane stored in permafrost is nearly twice the amount in the atmosphere and, as…
Descriptors: Models, Scientific Concepts, Earth Science, Science Activities
Brandin Conrath; Amy Voss Farris; Scott McDonald – Journal of Science Education and Technology, 2025
The changing landscape of geoscience learning has initiated growing interest in engaging science learners with climate data. One approach to teaching climate is the application of broadly accessible digital science curricula, which often include data tools such as visualizations, data representations, and simulations embedded within digital…
Descriptors: Earth Science, Wildlife, Science Education, Climate
Semilarski, Helen; Soobard, Regina; Holbrook, Jack; Rannikmäe, Miia – International Journal of STEM Education, 2022
Background: The goal of this research was to determine students' perceived self-efficacy in science classes through involving students in expanding disciplinary core idea (DCI) and interdisciplinary core idea (ICI) maps, as a method to visualize knowledge (utilizing mind mapping and concept mapping) to support students to integrate…
Descriptors: Self Efficacy, Science Education, Interdisciplinary Approach, Concept Mapping
McNeal, Peggy M.; Petcovic, Heather L. – Journal of Geoscience Education, 2020
The geosciences consist of multiple disciplines including geology, oceanography, and atmospheric science. Significant work expended to understand spatial thinking skills important to teaching and learning geology has advanced our ability to support students in geology courses and to achieve increased student success, retention, and diversity in…
Descriptors: Earth Science, Science Education, Educational Research, Spatial Ability
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
McLaughlin, Jessica A.; Lombardi, Doug; Davatzes, Alexandra; Shipley, Thomas F.; Holzer, Margaret A.; Hopkins, Jenelle D.; Jaeger, Allison J. – Science Teacher, 2018
Understanding the spatial nature of the world is necessary in everyday life. Not only do people move about in 3D space, but spatial thinking is also important in many science, technology, engineering, and mathematics (STEM) disciplines. This may be especially true in the geosciences, where learners often encounter unique spatial reasoning…
Descriptors: Spatial Ability, STEM Education, Earth Science, Visualization
Arthurs, Leilani A.; Elwonger, Justin M. – Journal of Astronomy & Earth Sciences Education, 2018
There is a growing need for public understanding about groundwater resources. Knowing what groundwater and aquifers are is fundamental to understanding more complex issues such as groundwater quality and availability. However, groundwater and related concepts are among the topics that instructors most struggle to teach. Although constructivist…
Descriptors: Water, College Students, Concept Formation, Earth Science
Soltis, Nicholas A.; McNeal, Karen S.; Atkins, Rachel M.; Maudlin, Lindsay C. – Journal of Geography in Higher Education, 2020
Augmented reality (AR) sandboxes are useful tools in helping students develop a three-dimensional understanding of topographic maps and landforms. Research on the AR sandbox indicates that students enjoy it, but evidence about student learning gains is inconclusive. This study aims to understand how students engage with these tools as a precedent…
Descriptors: Computer Simulation, Simulated Environment, Visualization, Maps
Giorgis, Scott; Mahlen, Nancy; Anne, Kirk – Journal of Geoscience Education, 2017
The augmented reality (AR) sandbox bridges the gap between two-dimensional (2D) and three-dimensional (3D) visualization by projecting a digital topographic map onto a sandbox landscape. As the landscape is altered, the map dynamically adjusts, providing an opportunity to discover how to read topographic maps. We tested the hypothesis that the AR…
Descriptors: Introductory Courses, Earth Science, Nonmajors, Topography
Wilhelm, Jennifer; Toland, Michael D.; Cole, Merryn – Journal of Education in Science, Environment and Health, 2017
Differences were examined between groups of sixth grade students? spatial-scientific development pre/post implementation of an Earth/Space unit. Treatment teachers employed a spatially-integrated Earth/Space curriculum, while control teachers implemented their Business as Usual (BAU) Earth/Space units. A multi-level modeling approach was used in a…
Descriptors: Grade 6, Middle School Students, Earth Science, Space Sciences

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