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Bateman, Kathryn M.; Ham, Joy; Barshi, Naomi; Tikoff, Basil; Shipley, Thomas F. – Journal of Geoscience Education, 2023
Spatial skills are embedded in all aspects of the geosciences. The teaching and learning of spatial skills has been a challenging, but vital, endeavor. To support student learning of spatial skills in undergraduate courses, we designed scaffolds for spatially dependent content in a mid-level geoscience course using playdough to allow students to…
Descriptors: Geology, Science Instruction, Course Content, Spatial Ability
Teplá, Milada; Teplý, Pavel; Šmejkal, Petr – International Journal of STEM Education, 2022
Background: Studies comparing the effect of dynamic and static visualization suggest a predominantly positive effect of dynamic visualization. However, the results of individual comparisons are highly heterogeneous. In this study, we assess whether dynamic visualization (3D models and animations) used in the experimental group has a stronger…
Descriptors: Foreign Countries, Middle School Students, High School Students, Visual Aids
Seijas, Nahia; Uskola, Araitz – International Journal of Science Education, 2022
Citizens show misunderstandigs about groundwater that hinder making informed decisions about problems like the deterioration of aquifers. Science education should address this, including modelling practices about the aquifer model. Physical models (PM) have been extensively used in geology teaching, but students rarely construct, evaluate or…
Descriptors: Geology, Science Instruction, Water, Water Quality
Dolphin, Glenn; Benoit, Wendy; Burylo, Jessica; Hurst, Emily; Petryshen, Wyatt; Wiebe, Simon – Journal of Geoscience Education, 2018
Many of the current issues facing humans are geologic in nature. Whether the issue is mitigating the impact of geologic hazards, reducing air and water pollution, managing the energy of mineral resources, or minimizing the impact of anthropogenic global climate change, we require a geosciences-literate population. This is crucial to developing…
Descriptors: Inquiry, Active Learning, Geology, Scientific Principles
Holder, Lauren N.; Scherer, Hannah H.; Herbert, Bruce E. – Journal of Geoscience Education, 2017
Engaging students in problem-solving concerning environmental issues in near-surface complex Earth systems involves developing student conceptualization of the Earth as a system and applying that scientific knowledge to the problems using practices that model those used by professionals. In this article, we review geoscience education research…
Descriptors: Earth Science, Science Instruction, Problem Solving, Models
Blanco-Anaya, Paloma; Justi, Rosária; Díaz de Bustamante, Joaquín – International Journal of Science Education, 2017
Modelling-based teaching activities have been designed and analysed from distinct theoretical perspectives. In this paper, we use one of them--the model of modelling diagram (MMD)--as an analytical tool in a regular classroom context. This paper examines the challenges that arise when the MMD is used as an analytical tool to characterise the…
Descriptors: Educational Opportunities, Barriers, Models, Video Technology
Marshall, Jilll A.; Castillo, Adam J.; Cardenas, M. Bayani – Journal of Geoscience Education, 2015
We investigated the effect of modeling and visualization resources on upper-division, undergraduate and graduate students' performance on an open-ended assessment of their understanding of physical hydrology. The students were enrolled in one of five sections of a physical hydrology course. In two of the sections, students completed homework…
Descriptors: Earth Science, Science Instruction, Scientific Concepts, Concept Formation
Jee, Benjamin D.; Uttal, David H.; Gentner, Dedre; Manduca, Cathy; Shipley, Thomas F.; Tikoff, Basil; Ormand, Carol J.; Sageman, Bradley – Journal of Geoscience Education, 2010
Geoscience instructors and textbooks rely on analogy for teaching students a wide range of content, from the most basic concepts to highly complicated systems. The goal of this paper is to connect educational and cognitive science research on analogical thinking with issues of geoscience instruction. Analogies convey that the same basic…
Descriptors: Geology, Earth Science, Science Education, Teaching Methods
O'Dell, Gary; Gonzalez-Espada, Wilson – Science Teacher, 2011
Students learn science best with activities that mirror the way scientists work. This article describes how geologists investigate groundwater flow systems in areas of karst topography--geologic formations shaped by dissolving bedrock--and provides a way for students to replicate this research. Students also use electric current to model water…
Descriptors: Water, Topography, Geology, Investigations
Gordon, Jessica – Science Scope, 2008
Water is an essential resource for all living things. How we live on our watershed can impact water quantity and quality. It is important to recognize how humans alter watershed dynamics, but students often find it challenging to visualize watershed processes and understand how decisions that they make as individuals and together as a community…
Descriptors: Water Quality, Conservation (Environment), Water Pollution, Science Instruction
Laney, Eric; Mattox, Steve – Science Scope, 2007
Gravity is a subtle but ubiquitous force that influences nearly all geologic processes from the formation of ores to the flow of glaciers and rivers. Gravity also determines the path some materials take as they flow down volcanoes. Lava flows, mudflows (also called lahars), and pyroclastic flows are three such materials. Understanding the factors…
Descriptors: Geology, Models, Science Instruction, Science Activities
Khine, Myint Swe, Ed.; Saleh, Issa M., Ed. – IGI Global, 2013
"Approaches and Strategies in Next Generation Science Learning" examines the challenges involved in the development of modern curriculum models, teaching strategies, and assessments in science education in order to prepare future students in the 21st century economies. This comprehensive collection of research brings together science educators,…
Descriptors: Teaching Methods, Science Education, Physical Sciences, Learning Theories
Hubenthal, Michael; Braile, Larry; Taber, John – Science Teacher, 2008
The Earthquake Machine (EML), a mechanical model of stick-slip fault systems, can increase student engagement and facilitate opportunities to participate in the scientific process. This article introduces the EML model and an activity that challenges ninth-grade students' misconceptions about earthquakes. The activity emphasizes the role of models…
Descriptors: Creative Teaching, Seismology, Concept Formation, Misconceptions
Rosenberg, Seth; Hammer, David; Phelan, Jessica – Journal of the Learning Sciences, 2006
Research on personal epistemologies (Hofer & Pintrich, 2002) has mostly conceptualized them as stable beliefs or stages of development. On these views, researchers characterize individual students' epistemologies with single, coherent descriptions. Evidence of variability in student epistemologies, however, suggests the need for more complex…
Descriptors: Grade 8, Epistemology, Classroom Communication, Geology

Lebofsky, Nancy R.; Lebofsky, Larry A. – Science Scope, 2002
Presents a science activity using cubes for constructing the "Olympus Mons" model, the largest known volcano in the solar system. Uses the Catalina Mountains as a real-life comparison and builds a scale-proportionate model. (YDS)
Descriptors: Astronomy, Earth Science, Geology, Models