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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
Gunes Keskin Cevik; Hikmet Surmeli – Journal of Baltic Science Education, 2024
Learning about the Earth through geoscience education is important in order to make informed decisions about the future of the Earth. The aim of this study is to examine students' conceptual development on geoscience subjects based on inquiry-based learning. 7th grade students participated in this study. The researcher prepared lesson plans and…
Descriptors: Earth Science, Science Tests, Heuristics, Scientific Concepts
Jee, Benjamin D.; Anggoro, Florencia K. – Grantee Submission, 2019
Models are central to the practice and teaching of science. Yet people often fail to grasp how scientific models explain their observations of the world. Realizing the explanatory power of a model may require aligning its relational structure to that of the observable phenomena. The present research tested whether "relational…
Descriptors: Scaffolding (Teaching Technique), Children, Comprehension, Models
LaDue, Nicole D.; Shipley, Thomas F. – Journal of Science Education and Technology, 2018
Geoscience instructors depend upon photos, diagrams, and other visualizations to depict geologic structures and processes that occur over a wide range of temporal and spatial scales. This proof-of-concept study tests click-on-diagram (COD) questions, administered using a classroom response system (CRS), as a research tool for identifying spatial…
Descriptors: Audience Response Systems, Visual Aids, Earth Science, Spatial Ability
Bitting, Kelsey S.; McCartney, Marsha J.; Denning, Kathy R.; Roberts, Jennifer A. – Research in Science Education, 2018
Virtual globe programs such as Google Earth replicate real-world experiential learning of spatial and geographic concepts by allowing students to navigate across our planet without ever leaving campus. However, empirical evidence for the learning value of these technological tools and the experience students gain by exploration assignments framed…
Descriptors: Computer Simulation, Pretests Posttests, Gender Differences, Ethnicity
Cheek, Kim A.; LaDue, Nicole D.; Shipley, Thomas F. – Journal of Geoscience Education, 2017
Geoscientists analyze and integrate spatial and temporal information at a range of scales to understand Earth processes. Despite this, the concept of scale is ill defined and taught unevenly across the K-16 continuum. This literature review focuses on two meanings of scale: one as the magnitude of the extent of a dimension and the other as a…
Descriptors: Earth Science, Spatial Ability, Time, Scientific Concepts
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
Kastens, Kim A.; Pistolesi, Linda; Passow, Michael J. – Journal of Geoscience Education, 2014
Research has shown that spatial thinking is important in science in general, and in Earth Science in particular, and that performance on spatially demanding tasks can be fostered through instruction. Because spatial thinking is rarely taught explicitly in the U.S. education system, improving spatial thinking may be "low-hanging fruit" as…
Descriptors: Spatial Ability, Scientific Concepts, Skill Analysis, Science Tests
Bodzin, Alec M.; Fu, Qiong; Bressler, Denise; Vallera, Farah L. – Computers in the Schools, 2015
Geospatially enabled learning technologies may enhance Earth science learning by placing emphasis on geographic space, visualization, scale, representation, and geospatial thinking and reasoning (GTR) skills. This study examined if and how a series of Web geographic information system investigations that the researchers developed improved urban…
Descriptors: Geographic Information Systems, Middle School Students, Spatial Ability, Logical Thinking
Cheek, Kim A. – Journal of Geoscience Education, 2013
Research about geologic time conceptions generally focuses on the placement of events on the geologic timescale, with few studies dealing with the duration of geologic processes or events. Those studies indicate that students often have very poor conceptions about temporal durations of geologic processes, but the reasons for that are relatively…
Descriptors: Earth Science, Science Instruction, Spatial Ability, Numbers
Cole, Merryn; Wilhelm, Jennifer; Yang, Hongwei – International Journal of Science Education, 2015
Relationships between sixth grade students' moon journaling and students' spatial-scientific reasoning after implementation of an Earth/Space unit were examined. Teachers used the project-based Realistic Explorations in Astronomical Learning curriculum. We used a regression model to analyze the relationship between the students' Lunar Phases…
Descriptors: Grade 6, Astronomy, Science Education, Spatial Ability
Reusser, Lucas J.; Corbett, Lee B.; Bierman, Paul R. – Journal of Geoscience Education, 2012
Constructing concept sketches (diagrams annotated with short captions in which students demonstrate their understanding of form, process, and interactions) provides a new and different way to teach Earth surface processes and assess the depth of student learning. During a semester-long course in Geomorphology, we used concept sketches as an…
Descriptors: Science Instruction, College Science, Undergraduate Students, Earth Science
Clary, Renee – Science Scope, 2009
Geologic time, or the time frame of our planet's history, is several orders of magnitude greater than general human understanding of "time." When students hear that our planet has a 4.6-billion-year history, they do not necessarily comprehend the magnitude of deep time, the huge expanse of time that has passed from the origin of Earth through the…
Descriptors: Geology, Astronomy, Spatial Ability, Time
Sanchez, Christopher A.; Wiley, Jennifer – Learning and Individual Differences, 2010
Males traditionally outperform females on measures of both visuospatial ability and science achievement. This experiment directly tests a manipulation designed to compensate for such differences through the presentation of relevant illustrations or animations to support the construction of understanding of a specific scientific phenomenon. Males…
Descriptors: Visualization, Science Achievement, Plate Tectonics, Short Term Memory
Bodzin, Alec M. – Journal of Research in Science Teaching, 2011
This study investigated whether a geospatial information technology (GIT)-supported science curriculum helped students in an urban middle school understand land use change (LUC) concepts and enhanced their spatial thinking. Five 8th grade earth and space science classes in an urban middle school consisting of three different ability level tracks…
Descriptors: Urban Environment, Urban Education, Middle School Students, Grade 8
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