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Adam Papendieck; Julia A. Clarke – Journal of the Learning Sciences, 2024
Background: Course-based research experiences (CBREs) are highly valued for science learning and research. Most are discipline-centered, but there is a great deal of interest in developing them to promote interdisciplinarity. Yet, we have much to learn about how CBREs work, and even more to learn about how disciplinary diversity operates as an…
Descriptors: Earth Science, Inquiry, Interdisciplinary Approach, Student Experience
Himes, Marie; Spires, Hiller; Krupa, Erin; Good, Cameron – Science Teacher, 2020
Although the existence of and access to clean water are essential for sustaining life on Earth, multiple studies have demonstrated students' nascent understanding of basic water principles. Students have misconceptions related to the water cycle (Ben-zvi-Assarf and Orion 2005), groundwater (Dickerson and Dawkins 2004; Covitt et al. 2009), and the…
Descriptors: Active Learning, Student Projects, Interdisciplinary Approach, Inquiry
Sampson, Victor; Murphy, Ashley – NSTA Press, 2019
Are you interested in using argument-driven inquiry (ADI) for elementary instruction but just aren't sure how to do it? You aren't alone. "Argument-Driven Inquiry in Third-Grade Science" will provide you with both the information and instructional materials you need to start using this method right away. The book is a one-stop source of…
Descriptors: Persuasive Discourse, Grade 3, Elementary School Science, Elementary School Students
Rowe, Penny M.; Fortmann, Lea; Guasco, Timothy L.; Wright, Aedin; Ryken, Amy; Sevier, Emma; Stokes, Grace; Mifflin, Amanda; Wade, Rachel; Cheng, Haiyan; Pfalzgraff, William; Beaudoin, Justin; Rajbhandari, Isha; Fox-Dobbs, Kena; Neshyba, Steven – Journal of Geoscience Education, 2021
Polar research plays a vital role in developing our understanding of Earth's climate system. It is intrinsically interdisciplinary, lending itself to integration into existing undergraduate courses. Here we explore introducing undergraduates to polar research through computational guided inquiry (CGI) modules taught in a variety of courses and…
Descriptors: Earth Science, Scientific Research, Undergraduate Students, Integrated Curriculum
Curran, Mary Carla; Bower, Amy S.; Furey, Heather H. – Science Activities: Classroom Projects and Curriculum Ideas, 2017
Creation of physical models can help students learn science by enabling them to be more involved in the scientific process of discovery and to use multiple senses during investigations. This activity achieves these goals by having students model ocean currents in the Gulf of Mexico. In general, oceans play a key role in influencing weather…
Descriptors: Science Instruction, Models, Teaching Methods, Inquiry
Walsh, Elizabeth Mary; McGowan, Veronica Cassone – International Journal of Science Education, 2017
Science education trends promote student engagement in authentic knowledge in practice to tackle personally consequential problems. This study explored how partnering scientists and students on a social media platform supported students' development of disciplinary practice knowledge through practice-based learning with experts during two pilot…
Descriptors: Science Education, Climate, Expertise, Earth Science
Singletary, Ted; Miller, Rickie – Science Teacher, 2009
An instructional unit incorporating some of the Global Learning and Observation to Benefit the Environment (GLOBE) hydrology protocols provides an excellent way to connect academic learning, scientific inquiry, multiple subjects, and the values required for concerned citizenship in a democracy. This article describes the GLOBE hydrology protocols…
Descriptors: Environmental Education, Democracy, Earth Science, Water

Baker, D. Blane; Sproles, Robert; Good, Glenn – Journal of College Science Teaching, 2000
Demonstrates a model system that recreates seasonal processes on Mars. Lists necessary materials and explains the construction of the demonstration. Provides discussion questions. (Contains 11 references.) (YDS)
Descriptors: Active Learning, Astronomy, Chemistry, Demonstrations (Science)
Bybee, Rodger W.; Van Scotter, Pamela – Educational Leadership, 2007
For many, the dominant model of curriculum development in science includes generating a topic, clarifying science content, identifying activities associated with the topic, and figuring out an assessment. Unfortunately, this approach tends to overemphasize activities and underemphasize mastery of science concepts and the process of scientific…
Descriptors: Science and Society, Curriculum Development, Biology, Science Curriculum
Wright, Russell G. – 1996
This book is designed for middle school students to learn scientific literacy through event-based science. Unlike traditional curricula, the event-based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork, independent research, hands-on investigations, and…
Descriptors: Astronomy, Earth Science, Group Activities, Hands on Science
Wright, Russell G. – 1996
This book is designed for middle school earth science or general science teachers to help their students learn scientific literacy through event-based science. Unlike traditional curricula, the event- based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork,…
Descriptors: Astronomy, Earth Science, Group Activities, Hands on Science
Wright, Russell G. – 1996
This book is designed for middle school students to learn scientific literacy through event-based science. Unlike traditional curricula, the event-based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork, independent research, hands-on investigations, and…
Descriptors: Earth Science, Earthquakes, Group Activities, Hands on Science
Wright, Russell G. – 1996
This book is designed for middle school earth science teachers to help their students learn about earthquakes and scientific literacy through event-based science. Unlike traditional curricula, the event- based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork,…
Descriptors: Earth Science, Earthquakes, Group Activities, Hands on Science
Wright, Russell G. – 1997
This book is designed for middle school students to learn scientific literacy through event-based science. Unlike traditional curricula, the event-based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork, independent research, hands-on investigations, and…
Descriptors: Earth Science, Group Activities, Hands on Science, Inquiry
Wright, Russell G. – 1997
This book is designed for middle school earth science teachers to help their students learn scientific literacy through event-based science. Unlike traditional curricula, the event-based earth science module is a student-centered, interdisciplinary, inquiry-oriented program that emphasizes cooperative learning, teamwork, independent research,…
Descriptors: Earth Science, Group Activities, Hands on Science, Inquiry