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William R. Penuel; Andrew E. Krumm; Carol Pazera; Corinne Singleton; Anna-Ruth Allen; Clarissa Deverel-Rico – Journal of Research in Science Teaching, 2024
Meaningful participation in science and engineering practices requires that students make their thinking visible to others and build on one another's ideas. But sharing ideas with others in small groups and classrooms carries social risk, particularly for students from nondominant groups and communities. In this paper, we explore how students'…
Descriptors: Middle School Students, Science Curriculum, Gender Differences, Racial Differences
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Anwar, Saira; Menekse, Muhsin; Guzey, Selcen; Bryan, Lynn A. – Journal of Research in Science Teaching, 2022
Recent calls for reform in K-12 science education and the National Academy of Engineering's Grand Challenges for Engineering in the 21st Century emphasize improving science teaching, students' engagement, and learning. In this study, we designed and implemented a curriculum unit for sixth-grade students (i = 1305). The curriculum unit integrated…
Descriptors: STEM Education, Grade 6, Interdisciplinary Approach, Science Education
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Plummer, Julia D.; Udomprasert, Patricia; Vaishampayan, Abha; Sunbury, Susan; Cho, Kyungjin; Houghton, Harry; Johnson, Erin; Wright, Erika; Sadler, Philip M.; Goodman, Alyssa – Journal of Research in Science Teaching, 2022
Strong spatial skills are foundational in predicting students' performance in science, technology, engineering, and mathematics education. Decades of research have considered the relationship between thinking spatially and how scientists reason and solve problems. However, few studies have examined the factors that influence improvement in…
Descriptors: Spatial Ability, STEM Education, Academic Achievement, Middle School Students
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Boda, Phillip A.; Bathia, Shruti; Linn, Marcia C. – Journal of Research in Science Teaching, 2021
Integrating sophisticated graphical analysis skills as they learn science is essential for K-12 students and emphasized in current standards. In this study, we iteratively designed a Graphing Integration Inventory (GII) over a three-year period, while also supporting students to develop their capabilities to use graphs to learn science content in…
Descriptors: Middle School Students, Graphs, Teaching Methods, Science Instruction
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Paños, Esther; Ruiz-Gallardo, José-Reyes – Journal of Research in Science Teaching, 2021
Attitude toward science has been recognized as highly influential in students' engagement with science and future career choices. Science is important in our everyday lives as well, in a society demanding more scientific vocations and higher levels of scientific literacy. There is little research on how attitudes develop and evolve at early ages,…
Descriptors: Scientific Attitudes, Educational Attitudes, Science Education, Informal Education
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Schneider, Barbara; Krajcik, Joseph; Lavonen, Jari; Salmela-Aro, Katariina; Broda, Michael; Spicer, Justina; Bruner, Justin; Moeller, Julia; Linnansaari, Janna; Juuti, Kalle; Viljaranta, Jaana – Journal of Research in Science Teaching, 2016
This study explores how often students are engaged in their science classes and their affective states during these times, using an innovative methodology that records these experiences "in situ". Sampling a subset of high schools in the U.S. and Finland, we collected over 7,000 momentary responses from 344 students over the course of a…
Descriptors: Educational Environment, Foreign Countries, Science Instruction, High School Students
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Brotman, Jennie S.; Moore, Felicia M. – Journal of Research in Science Teaching, 2008
Despite valuable syntheses of the field of gender and science education, there has not been a systematic, comprehensive review of the literature on gender and science education in recent years. We examine the literature pertaining to girls' engagement in science and develop four themes (equity and access, curriculum and pedagogy, the nature and…
Descriptors: Females, Science Education, Womens Education, Feminism
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Glynn, Shawn M.; Taasoobshirazi, Gita; Brickman, Peggy – Journal of Research in Science Teaching, 2007
A theoretical model of nonscience majors' motivation to learn science was tested by surveying 369 students in a large-enrollment college science course that satisfies a core curriculum requirement. Based on a social-cognitive framework, motivation to learn science was conceptualized as having both cognitive and affective influences that foster…
Descriptors: Learning Motivation, College Science, Careers, Structural Equation Models