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Wilcox, Jesse; Reiter, Reade; Rose, Abby; Alberts, Alex; Murano, Katie – Science and Children, 2022
Although the "Next Generation Science Standards" (NGSS) have three dimensions, the crosscutting concepts are often the forgotten dimension. One reason teachers may not emphasize the crosscutting concepts might be because they are broad, domain-general constructs that can be difficult to conceptualize in a meaningful way. Yet, when taught…
Descriptors: Science Instruction, Scientific Principles, Teaching Methods, Inquiry
Harvey, Jenna; Gunshenan, Clare; Inouye, Martha – Science and Children, 2022
This article describes one participating teacher's reflections on the generalizable strategies and structures from the professional development (PD) sessions that enabled her sensemaking, and how she translated these generalizations into her own second-grade classroom. Readers will be able to make their own useful generalizations from these…
Descriptors: Professional Development, Elementary School Teachers, Grade 2, Science Instruction
Coleman, Julianne; Donovan, Carol – Science and Children, 2018
Scientists must interpret and produce visuals in their work. Scientists also use visual information to communicate their findings to the general public. Visual representations are used in science because of the abstract nature of scientific information as many concepts are unable to be seen with the naked eye. The current educational climate…
Descriptors: Science Instruction, Visual Stimuli, Scientific Concepts, Concept Formation
Stout, Jody; Rouse, Rob; Malesic, Jonathan; Krummeck, Katie – Science and Children, 2022
Design thinking--a human-centered approach to problem solving--is a process by which K-12 teachers engage students in solving relevant issues that occur in their schools. In this article, the authors describe a project in which fourth-graders used design thinking to solve an unexpected issue related to a much-anticipated class project. The project…
Descriptors: Grade 4, Elementary School Students, Design, Animals
Vincent, Valeria; Powell, Frieda; Miller, Emily Adah; Kelly, Susan Codere – Science and Children, 2022
In this essay from a teacher in Argentina, Valeria Vincent describes how she employed Multiple Literacies in Project-based Learning (MLPBL) (Krajcik, Palincsar, and Miller 2015). ML-PBL, an open education free resource, has three design principles that support teacher and student learning and satisfaction. ML-PBL builds on teacher ingenuity and…
Descriptors: Foreign Countries, Multiple Literacies, Active Learning, Student Projects
Carone, Delaney; Perkins, Ashley; Scott, Catherine – Science and Children, 2023
This lesson focuses specifically on teaching concepts of speed and its impact on energy, as well as providing a basic introduction to potential and kinetic energy to fourth-grade students. "Next Generation Science Standards" ("NGSS") 4-PS3-1 states that students should be able "to use evidence to construct an explanation…
Descriptors: Grade 4, Science Instruction, Energy, Scientific Concepts
Tofel-Grehl, Colby; Litts, Breanne; Searle, Kristin – Science and Children, 2016
Traditionally, electricity and circuits are taught using alligator clips, lightbulbs, batteries, and wires. Although these circuits engage students in building, they don't always provide opportunities for students to deeply explore energy, electricity, polarity, and circuitry. Multimedia Circuits is a curricular unit made up of three projects that…
Descriptors: Energy, Elementary Schools, Equipment, Science Education
Miller, Bridget; Satsangi, Rajiv – Science and Children, 2018
Today's classrooms contain students with a variety of needs. Although teachers work to differentiate and meet the needs of diverse students, inclusion of students with physical disabilities can present multiple obstacles in science classrooms. However, with advanced planning and strategic accommodations, the needs of these students can often be…
Descriptors: Science Instruction, Grade 2, Rural Schools, Elementary School Teachers
Merricks, Jessica; Lankford, Deanna – Science and Children, 2019
For some elementary science teachers, a unit on land and water brings nightmares of dirt and water all over the room. Several Earth science "kits" contain hands-on exercises that allow the students to "get messy" as they manipulate materials; however, these lessons may lack the necessary opportunities for students to ask unique…
Descriptors: Elementary School Science, Elementary School Students, Science Education, Relevance (Education)
Reese, Jessica; Miller, Kurtz – Science and Children, 2017
The inadequate funding of science education in many school districts, particularly in underserved areas, is preventing elementary science educators from realizing the full potential of the "Next Generation Science Standards" ("NGSS"). Yet many elementary science teachers may be unaware that millions of dollars per year are…
Descriptors: Elementary School Science, Elementary School Teachers, Science Teachers, Financial Support
Robertson, Bill – Science and Children, 2017
This column provides background science information for elementary teachers. This month's issue discusses the rotation of the moon. The author investigates what would happen if the moon did not rotate and addresses exactly why the Moon does what it does with respect to rotation.
Descriptors: Astronomy, Science Teachers, Elementary School Science, Physics
Tofel-Grehl, Colby; Braden, Sarah; Penrod, Candace; Wheeler, Laura; Hansen, Tyler; Jones, Andrew; Chamberlain, Clayton – Science and Children, 2023
Animals depend on their surroundings for their survival. In consuming their food, animals are consuming energy. This cycling of matter and the accompanying flow of energy within an ecosystem occurs because of interactions among and between organisms. To guide students in modeling how ecosystems function, the authors share "Ecosystem…
Descriptors: Science Instruction, Teaching Methods, Standards, Energy
Bhattacharya, Devarati; Adams, Krista L.; Mittelstet, Tammera J. – Science and Children, 2018
Scientific modeling, the practice of creating models such as "diagrams, analogies, and simulations" (NGSS Lead States 2013) allows students to develop and revise their own representations of the natural world and use them to generate predictions and explanations about scientific phenomenon. Research provides evidence for elementary…
Descriptors: Learning Centers (Classroom), Models, Science Instruction, Grade 2
Gumpert, Mindy; McConell, William – Science and Children, 2019
Students with disabilities spend the majority of their day in the general education classroom (U.S. Department of Education 2017). However, these students consistently underperform in science. This highlights the importance of using effective differentiated instruction. According to Mastropieri and colleagues (2006), differentiated instruction…
Descriptors: Students with Disabilities, Science Instruction, Individualized Instruction, Grade 3
Jurkiewicz, Melissa A.; Kirn, Adam; Crowther, David – Science and Children, 2019
Interactions with forces and energy can range from a toddler dropping toys repeatedly for someone else to pick up to a group of fifth graders playing soccer at recess. In addition, students may have observed the power of water to move physical objects by seeing news footage of rising floodwaters, experimenting with a garden hose, or spending a day…
Descriptors: Grade 3, Grade 4, Grade 5, Water