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Johnson, Philip – School Science Review, 2020
Earthbound manifestations of gravity in falling objects are distorted by the large mass and size of the Earth. Movement is also affected by air resistance. This article questions whether an approach based on everyday observations is necessarily the best starting point for introducing the idea of Newtonian gravity. Instead, a theoretical approach…
Descriptors: Science Education, Earth Science, Misconceptions, Scientific Concepts
Perera, Viranga; Mead, Chris; van der Hoeven Kraft, Katrien J.; Stanley, Sabine; Angappan, Regupathi; MacKenzie, Shannon; Barik, Ankit; Buxner, Sanlyn – Journal of Geoscience Education, 2021
The future viability of the geosciences is challenged, since as a community we continue to lack demographic diversity representative of the wider population. Fundamentally, dominant cultural, historical, and socioeconomic factors contribute to the lack of diversity and those factors typically change slowly over generations. Proposals for more…
Descriptors: Earth Science, Science Instruction, Emotional Response, Student Diversity
Berry, Alex; Delgado Vintimilla, Cristina; Pacini-Ketchabaw, Veronica – Equity & Excellence in Education, 2020
In an inquiry with young children at a small river beside a school in Cuenca, Ecuador, romanticizations of harmonious childhoods and pristine, even magical, river natures are in abundance. Using common worlds framings, this article interrupts purity in child-nature pedagogies. We argue that encountering the river as a site of contradiction, and as…
Descriptors: Early Childhood Education, Teaching Methods, Outdoor Education, Physical Activities
Chaudhuri, S. – Physics Education, 2019
In this paper, we derive an equation for the distance covered by a free-falling body as a function of time valid for any arbitrary distance. The equation, interestingly, yields exactly the time according to the Kepler's third law in the limiting case of very large distance compared to the radius of the Earth. The equation, of course, reduces to…
Descriptors: Physics, Science Instruction, Earth Science, Scientific Principles
Olivo, Marisa; Smith, Reid Jewett – New Educator, 2021
This article examines how the MAT [Master of Arts in Teaching] program in Earth Science at the American Museum of Natural History was conceptualized and enacted within its institutional context. We argue that the program was completely consistent with the museum's public and democratic institutional logic, as reflected in funding, staffing,…
Descriptors: Masters Programs, Earth Science, Museums, Science Teachers
Macdonald, R. Heather; Beane, Rachel J.; Baer, Eric M. D.; Eddy, Pamela L.; Emerson, Norlene R.; Hodder, Jan; Iverson, Ellen R.; McDaris, John R.; O'Connell, Kristin; Ormand, Carol J. – Journal of Geoscience Education, 2019
Faculty play an important role in attracting students to the geosciences, helping them to thrive in geoscience programs, and preparing them for careers. Thus, faculty have the responsibility to work toward broadening participation in the geosciences by implementing equitable and inclusive practices in their teaching and their programs. Faculty…
Descriptors: Educational Change, Change Agents, College Faculty, Faculty Development
Carabajal, Ivan G.; Marshall, Anita M.; Atchison, Christopher L. – Journal of Geoscience Education, 2017
People with disabilities make up the largest minority population in the U.S. yet remain sorely underrepresented in scientific disciplines that require components of field-based training such as the geosciences. This paper provides a critical analysis of broadening participation within geoscience education literature through the use of accessible…
Descriptors: Disabilities, Barriers, Teaching Methods, Equal Education
Mills, Reece; Tomas, Louisa; Lewthwaite, Brian – International Journal of Science Education, 2016
In response to calls for research into effective instruction in the Earth and space sciences, and to identify directions for future research, this systematic review of the literature explores research into instructional approaches designed to facilitate conceptual change. In total, 52 studies were identified and analyzed. Analysis focused on the…
Descriptors: Earth Science, Space Sciences, Literature Reviews, Teaching Methods
de Hosson, Cécile; Décamp, Nicolas – Science & Education, 2014
A great amount of research has been carried out world-wide to promote history of science as a powerful science teaching tool. Because the ways of choosing and using historical elements depend on teachers' or researchers' educational purpose, any attempt to support a single model-to-use seems difficult and probably irrelevant. However,…
Descriptors: Astronomy, Science History, Science Instruction, Teaching Methods
Bush, Drew; Sieber, Renee; Seiler, Gale; Chandler, Mark – Journal of Geoscience Education, 2016
A gap has existed between the tools and processes of scientists working on anthropogenic global climate change (AGCC) and the technologies and curricula available to educators teaching the subject through student inquiry. Designing realistic scientific inquiry into AGCC poses a challenge because research on it relies on complex computer models,…
Descriptors: Climate, Earth Science, Curriculum Design, Science Curriculum
Brkich, Katie Lynn – Cultural Studies of Science Education, 2014
Earth science education, as it is traditionally taught, involves presenting concepts such as weathering, erosion, and deposition using relatively well-known examples--the Grand Canyon, beach erosion, and others. However, these examples--which resonate well with middle- and upper-class students--ill-serve students of poverty attending urban schools…
Descriptors: Science Instruction, Scientific Concepts, Earth Science, Teaching Methods
Gregory, Christine – Science Teacher, 2012
In this article, the author describes the "Be your own groundhog" project in her grades 9-12 Earth and environmental sciences courses, in which students use citizen science databases to research the physical changes that signal the arrival of spring. This project starts with a simple question, "When will spring spring?" This goes beyond the…
Descriptors: Environmental Education, Teaching Methods, Science Instruction, Secondary School Science
Clary, Renee; Wandersee, James – Science Scope, 2011
Discover the secrets contained in fossilized feces. Few topics in middle school classrooms capture students' enthusiasm and interest as do coprolites. These trace fossils offer classroom opportunities for integrated life and Earth sciences study, a stranger-than-fiction history of science, and an opportunity to solve mysteries. (Contains 8…
Descriptors: Paleontology, Earth Science, Class Activities, Science Activities
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
Nam, Younkyeong – Cultural Studies of Science Education, 2012
This review explores Ben-Zvi Assaraf, Eshach, Orion, and Alamour's paper titled "Cultural Differences and Students' Spontaneous Models of the Water Cycle: A Case Study of Jewish and Bedouin Children in Israel" by examining how the authors use the concept of spontaneous mental models to explain cultural knowledge source of Bedouin…
Descriptors: Constructivism (Learning), Water, Jews, Cultural Differences