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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
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Rivet, Ann E.; Kastens, Kim A. – Journal of Research in Science Teaching, 2012
In recent years, science education has placed increasing importance on learners' mastery of scientific reasoning. This growing emphasis presents a challenge for both developers and users of assessments. We report on our effort around the conceptualization, development, and testing the validity of an assessment of students' ability to reason around…
Descriptors: Science Education, Earth Science, Logical Thinking, Grade 9
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Kastens, Kim A.; Rivet, Ann – Science Teacher, 2008
To help teachers enrich their students' understanding of inquiry in Earth science, this article describes six modes of inquiry used by practicing geoscientists (Earth scientists). Each mode of inquiry is illustrated by using examples of seminal or pioneering research and provides pointers to investigations that enable students to experience these…
Descriptors: Investigations, Earth Science, Inquiry, Science Instruction
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Liben, Lynn S.; Kastens, Kim A.; Christensen, Adam E. – Cognition and Instruction, 2011
To study the role of spatial concepts in science learning, 125 college students with high, medium, or low scores on a horizontality (water-level) spatial task were given information about geological strike and dip using existing educational materials. Participants mapped an outcrop's strike and dip, a rod's orientation, pointed to a distant…
Descriptors: Student Evaluation, Error Patterns, Spatial Ability, Teaching Methods