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Lie, Richard; Aranda, Maurina L.; Guzey, S. Selcen; Moore, Tamara J. – Research in Science Education, 2021
Recent reforms in science education have supported the inclusion of engineering and their practices in K-12 curricula. To this end, many classrooms have incorporated engineering units that include design challenges. Design is an integral part of engineering and can help students think in creative and interdisciplinary ways. In this study, we…
Descriptors: Middle School Students, Engineering, Design, Science Curriculum
Aranda, Maurina L.; Lie, Richard; Selcen Guzey, S.; Makarsu, Murat; Johnston, Amanda; Moore, Tamara J. – Research in Science Education, 2020
Recent science education reforms highlight the importance for teachers to implement effective instructional practices that promote student learning of science and engineering content and their practices. Effective classroom discussion has been shown to support the learning of science, but work is needed to examine teachers' enactment of…
Descriptors: Classroom Communication, Middle School Teachers, Science Curriculum, Genetics
Peralta, Yadira; Moreno, Mario; Harwell, Michael; Guzey, S. Selcen; Moore, Tamara J. – Educational Research Quarterly, 2018
Variance heterogeneity is a common feature of educational data when treatment differences expressed through means are present, and often reflects a treatment by subject interaction with respect to an outcome variable. Identifying variables that account for this interaction can enhance understanding of whom a treatment does and does not benefit in…
Descriptors: Educational Research, Hierarchical Linear Modeling, Engineering, Design
Moore, Tamara J.; Glancy, Aran W.; Tank, Kristina M.; Kersten, Jennifer A.; Smith, Karl A.; Stohlmann, Micah S. – Journal of Pre-College Engineering Education Research, 2014
Recent U.S. national documents have laid the foundation for highlighting the connection between science, technology, engineering and mathematics at the K-12 level. However, there is not a clear definition or a well-established tradition of what constitutes a quality engineering education at the K-12 level. The purpose of the current work has been…
Descriptors: Engineering Education, Engineering, Elementary Secondary Education, Literature Reviews
Selcen Guzey, S.; Moore, Tamara J.; Morse, Gillian – School Science and Mathematics, 2016
Current reform efforts in science education around the world call on teachers to use integrated approaches to teach science. As a part of such reform efforts in the United States, engineering practices and engineering design have been identified in K-12 science education standards. However, there is relatively little is known about effective ways…
Descriptors: Science Education, Educational Change, Teaching Methods, Engineering
Roehrig, Gillian H.; Moore, Tamara J.; Wang, Hui-Hui; Park, Mi Sun – School Science and Mathematics, 2012
The problems that we face in our ever-changing, increasingly global society are multidisciplinary, and many require the integration of multiple science, technology, engineering, and mathematics (STEM) concepts to solve them. National calls for improvement of STEM education in the United States are driving changes in policy, particularly in…
Descriptors: Elementary Secondary Education, State Standards, Academic Standards, Educational Change
Guzey, S. Selcen; Moore, Tamara J.; Harwell, Michael; Moreno, Mario – Journal of Science Education and Technology, 2016
In many countries around the world, there has been an increasing emphasis on improving science education. Recent reform efforts in the USA call for teachers to integrate scientific and engineering practices into science teaching; for example, science teachers are asked to provide learning experiences for students that apply crosscutting concepts…
Descriptors: STEM Education, Middle School Students, Grade 7, Biological Sciences
Hjalmarson, Margret A.; Moore, Tamara J.; delMas, Robert – Statistics Education Research Journal, 2011
Results of analysis of responses to a first-year undergraduate engineering activity are presented. Teams of students were asked to develop a procedure for quantifying the roughness of a surface at the nanoscale, which is typical of problems in Materials Engineering where qualities of a material need to be quantified. Thirty-five teams were…
Descriptors: College Freshmen, Engineering, Laboratories, Learning Activities