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Kirby, Caitlin K.; Libarkin, Julie C.; Thomas, Stephen – Journal of Geoscience Education, 2022
Natural selection is a fundamental scientific process, yet students and educators alike demonstrate misconceptions of the process. Though images are used often in science to facilitate learning, it is less common to assess learners' understanding through their own drawings. This study utilizes a multiple-choice assessment of evolutionary processes…
Descriptors: Earth Science, Scientists, Evolution, Freehand Drawing
Jaimes, Patricia; Libarkin, Julie C.; Conrad, Dominik – CBE - Life Sciences Education, 2020
While interdisciplinary collaboration is desired among researchers, traditional science instruction generally results in science disciplines being taught as separate entities. This study focuses on student understanding of concepts at the intersection of two isolated disciplines--geoscience and bioscience--across two purposeful samples of…
Descriptors: College Students, Knowledge Level, Scientific Concepts, Earth Science
Aksit, Osman; McNeal, Karen S.; Gold, Anne U.; Libarkin, Julie C.; Harris, Sara – Journal of Research in Science Teaching, 2018
We evaluated influences on the climate change risk perceptions of undergraduate students in an introductory Earth Science course. For this sample, domain-specific content knowledge about climate change was a significant predictor of students' risk perception of climate change while cultural worldviews (individualism, hierarchy) and political…
Descriptors: Undergraduate Students, Earth Science, Climate, Introductory Courses
Anderson, Steven W.; Libarkin, Julie C. – Journal of Geoscience Education, 2016
Nationwide pre- and posttesting of introductory courses with the Geoscience Concept Inventory (GCI) shows little gain for many of its questions. Analysis of more than 3,500 tests shows that 22 of the 73 GCI questions had gains of <0.03, and nearly half of these focused on basic physics and chemistry. We also discovered through an assessment of…
Descriptors: Earth Science, Concept Teaching, Scientific Concepts, Pretests Posttests
LaDue, Nicole D.; Libarkin, Julie C.; Thomas, Stephen R. – Journal of Science Education and Technology, 2015
The pervasive use of visual representations in textbooks, curricula, and assessments underscores their importance in K-12 science education. For example, visual representations figure prominently in the recent publication of the Next Generation Science Standards (NGSS Lead States in Next generation science standards: for states, by states.…
Descriptors: Science Education, Earth Science, Biology, Physics
Callahan, Caitlin N.; Libarkin, Julie C.; McCallum, Carmen M.; Atchison, Christopher L. – Journal of Geoscience Education, 2015
In this commentary, we argue that social capital theory, the idea that membership in a group creates opportunities to acquire valuable information and resources from other group members, is a useful framework in which to consider ways to increase diversity in the Earth System Sciences (ESS) and in the science, technology, engineering, and…
Descriptors: Social Capital, Earth Science, STEM Education, Labor Force Development
McNeal, Karen S.; Libarkin, Julie C.; Ledley, Tamara Shapiro; Bardar, Erin; Haddad, Nick; Elins, Kathy; Dutta, Saranee – Journal of Geoscience Education, 2014
This study reports on an effort to illustrate the coupling of educational research with ongoing curriculum development to promote effective and evidence-based online learning. The research findings have been used to inform the "EarthLabs" curriculum development team as they revise existing modules and create new modules, in order to…
Descriptors: Curriculum Development, Climate, Earth Science, Online Courses
Libarkin, Julie C.; Schneps, Matthew H. – International Electronic Journal of Elementary Education, 2012
We report on interviews conducted with twenty-one elementary school children (grades 1-5) about a number of Earth science concepts. These interviews were undertaken as part of a teacher training video series designed specifically to assist elementary teachers in learning essential ideas in Earth science. As such, children were interviewed about a…
Descriptors: Earth Science, Elementary School Students, Scientific Concepts, Abstract Reasoning
Geraghty Ward, Emily M.; Semken, Steven; Libarkin, Julie C. – Journal of Geoscience Education, 2014
We present a mixed-methods approach to community-based assessment design that engages tribal college and university faculty, students, and science educators, as well as experts in cultural knowledge from the Blackfeet and DinĂ© (Navajo) nations. Information from cultural experts, gathered through a combination of sequential surveys and focus group…
Descriptors: Mixed Methods Research, Earth Science, Tribally Controlled Education, American Indian Students
Petcovic, Heather L.; Libarkin, Julie C.; Baker, Kathleen M. – Journal of Geoscience Education, 2009
The investigation of how geologists engage in field mapping, including strategies and behaviors, is an open area of research with significant potential for identifying connections to best instructional practices. While study of experts in an array of disciplines has yielded general conclusions about the nature of expertise, the consideration of…
Descriptors: Earth Science, Pilot Projects, Geology, Mixed Methods Research
Clark, Scott K.; Sibley, Duncan F.; Libarkin, Julie C.; Heidemann, Merle – Journal of Geoscience Education, 2009
The need to engage K-12 and post-secondary students in considering the Earth as a dynamic system requires explicit discussion of system characteristics. Fundamentally, dynamic systems involve the movement and change of matter, often through processes that are difficult to see and comprehend. We introduce a novel instructional method, termed…
Descriptors: Geology, Earth Science, Science Instruction, Instructional Innovation

Libarkin, Julie C.; Kurdziel, Josepha P. – Journal of Geoscience Education, 2001
Discusses the issues related to students' alternative conceptions, how these conceptions affect student learning, identification of these conceptions, and teaching methods able to transform students' conceptions into scientific understanding. Includes 20 references. (YDS)
Descriptors: Earth Science, Higher Education, Research Methodology, Science Education