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This project examined the importance of inquiry in science education. The Arizona Science
Standards call for a change from teaching facts to teaching students to construct explanations of phenomena by engaging in science and engineering practices. Through a blend of science and engineering practices, core ideas, and crosscutting concepts, the performance

This project examined the importance of inquiry in science education. The Arizona Science
Standards call for a change from teaching facts to teaching students to construct explanations of phenomena by engaging in science and engineering practices. Through a blend of science and engineering practices, core ideas, and crosscutting concepts, the performance expectations form standards that address applying ideas to explanation of phenomena, problem solving, and decision making. The ideas conveyed in the standards need to be developed over time through multiple lessons. Rather than simply present information to students, the Arizona Science Standards require teachers to support students in constructing explanations of phenomena and developing solutions to problems. The integration of the Arizona Science Standards in the science curriculum through the Five E model has the potential to provide students with inquiry- based learning that will help develop their science literacy skills. The 5E inquiry model consists of five phases: Engagement, Exploration, Explanation, Elaboration, and Evaluation. Each phase contributes to the learning process as students are encouraged to actively build their knowledge. The learning experiences in science education become richer and more meaningful to students when the science literacy skills are successfully integrated into the 5E inquiry model. Not only will the students learn the skills of science, but also, they will be actively engaged with science content. Active engagements with science will likely foster interest and positive attitudes towards science. This thesis project developed a way to implement inquiry-based learning through an electricity and magnetism unit that uses the 5E model and aligns with the Arizona State Science Standards. The goal of this project was to develop a science unit that can be implemented in future classrooms.
ContributorsZou, Christy (Author) / Walters, Molina (Thesis director) / McKee, Dianne (Committee member) / Division of Teacher Preparation (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05
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Description
This project was focused on creating a trade book that could be used in Kindergarten through first-grade classrooms for science lessons. I have analyzed and researched the benefits of using trade books in the classroom. Along with those benefits, best practices were also looked at. I then applied those key

This project was focused on creating a trade book that could be used in Kindergarten through first-grade classrooms for science lessons. I have analyzed and researched the benefits of using trade books in the classroom. Along with those benefits, best practices were also looked at. I then applied those key questions, ideas, and concepts that are used to determine the use of a trade in the classroom, and created my own trade book. The trade book was centered around a standard from Next Generation Science Standards for Kindergarten through first-grade. The focus of this book was to inform children, in an age appropriate, yet scientifically accurate and engaging format, what living organisms need in order to survive and grow. The trade book brings all the research and creativity together in order to inform and benefit students in their learning process. This creative project has allowed me to broaden my literary skills, as well as my creativity for teaching in the classroom.
ContributorsMercado, Catherine Louise (Author) / Pfister-Angulo, Mark (Thesis director) / McKee, Dianne (Committee member) / Division of Teacher Preparation (Contributor) / Barrett, The Honors College (Contributor)
Created2020-05