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Luvia R. Nastiti; Widha Sunarno; Sukarmin Sukarmin; Sulistyo Saputro; Luqman Baehaqi – Journal of Baltic Science Education, 2024
The intricacy of real-world challenges in project-based geoscience learning is complex to assess with a STEM approach; hence, research into an effective model is necessary to address current issues in education. Understanding the role of STEM in resolving challenging real-world issues requires integrating STEM literacy that is appropriate for…
Descriptors: STEM Education, Multiple Literacies, Active Learning, Student Projects
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Brecha, Robert J. – Physics Education, 2021
Simple energy balance models of planetary systems are of fundamental importance to understanding equilibrium temperatures. Most textbooks that discuss energy balance take a further step and include the effects of an atmosphere on the surface temperature. It is noticeable, however, that in such discussions of planetary surface energy balance some…
Descriptors: Earth Science, Models, Science Instruction, Energy
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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
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Hutchins, Nicole M.; Biswas, Gautam; Zhang, Ningyu; Snyder, Caitlin; Lédeczi, Ákos; Maróti, Miklós – International Journal of Artificial Intelligence in Education, 2020
Driven by our technologically advanced workplaces and the surge in demand for proficiency in the computing disciplines, it is becoming imperative to provide computational thinking (CT) opportunities to all students. One approach for making computing accessible and relevant to learning and problem-solving in K-12 environments is to integrate it…
Descriptors: Computer Assisted Instruction, Problem Solving, Computation, Thinking Skills
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Wee, Loo Kang; Goh, Giam Hwee – Physics Education, 2013
We develop an Easy Java Simulation (EJS) model for students to visualize geostationary orbits near Earth, modelled using a Java 3D implementation of the EJS 3D library. The simplified physics model is described and simulated using a simple constant angular velocity equation. We discuss four computer model design ideas: (1) a simple and realistic…
Descriptors: Physics, Computers, Earth Science, Satellites (Aerospace)
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
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Sneider, Cary; Stephenson, Chris; Schafer, Bruce; Flick, Larry – Science Teacher, 2014
A "Framework for K-12 Science Education" identified eight practices as "essential elements of the K-12 science and engineering curriculum" (NRC 2012, p. 49). Most of the practices, such as Developing and Using Models, Planning and Carrying Out Investigations, and Analyzing and Interpreting Data, are well known among science…
Descriptors: High School Students, Secondary School Science, Thinking Skills, Computation
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Singha, Kamini; Loheide, Steven P., II – International Journal of Science Education, 2011
Visualising subsurface processes in hydrogeology and building intuition for how these processes are controlled by changes in forcing is hard for many undergraduate students. While numerical modelling is one way to help undergraduate students explore outcomes of multiple scenarios, many codes are not user-friendly with respect to defining domains,…
Descriptors: Undergraduate Students, Intuition, Science Education, Physics
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Fichter, Lynn S.; Pyle, E. J.; Whitmeyer, S. J. – Journal of Geoscience Education, 2010
To say Earth systems are complex, is not the same as saying they are a complex system. A complex system, in the technical sense, is a group of -agents (individual interacting units, like birds in a flock, sand grains in a ripple, or individual units of friction along a fault zone), existing far from equilibrium, interacting through positive and…
Descriptors: Teaching Methods, Mixed Methods Research, Outcomes of Education, Scoring Rubrics
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Young, Charles T. – Journal of Geoscience Education, 2002
Details the use of tabletop models that demonstrate concepts in direct current electrical resistivity, self-potential, and electromagnetic geophysical models. Explains how data profiles of the models are obtained. (DDR)
Descriptors: College Curriculum, Concept Formation, Earth Science, Geology
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Hickman, Jennifer Bond, Ed. – Physics Teacher, 1993
Presents two methods to teach the phases of the Moon: (1) students use a Styrofoam ball (Moon), light bulb (Sun), and one's own head (Earth) to model the Earth-Moon-Sun system; (2) students use their hands to represent the location of the Sun, Earth, and Moon during a teacher controlled "Moon Dance." (MVL)
Descriptors: Astronomy, Demonstrations (Educational), Earth Science, Models
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Levine, Judah – Physics Teacher, 1982
In addition to oceans, the earth is subjected to tidal stresses and undergoes tidal deformations. Discusses origin of tides, tidal stresses, and methods of determining tidal deformations (including gravity, tilt, and strain meters). (JN)
Descriptors: College Science, Earth Science, Gravity (Physics), High Schools