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Jensen, Marc – Montessori Life: A Publication of the American Montessori Society, 2020
As children develop an understanding of their place in the universe, their mental model of the solar system should really go beyond a list of planet names and attributes to become a dynamic concept of bodies in motion and interaction. Montessori educators can help build a Sensorial impression of the cosmos by physically modeling the nature of…
Descriptors: Montessori Schools, Montessori Method, Astronomy, Science Education
Bondurant, Liza; Odenwald, Sten – Science Teacher, 2020
Most likely a large number of students have heard of the Northern Lights (Aurora Borealis), and know that they are a phenomenon in the sky. Although they may not have seen the Northern Lights, most have probably seen other phenomena in the sky, such as a rainbow, shooting star, or super moon. These experiences provide an opportunity for students…
Descriptors: Science Instruction, Mathematics Instruction, Equations (Mathematics), Prediction
McKinney, Daniel – Science Teacher, 2020
Teaching the tools and concepts associated with modern physics can often be a daunting and difficult task for secondary science teachers. Classical physics is often perceived as intimidating and complex in its own right. Modern physics addressing quantum phenomena where Newtonian laws break down is even more abstract for learners. However,…
Descriptors: Teaching Methods, Science Instruction, Physics, Scientific Concepts
Pearlman, Melanie – Science Teacher, 2019
Spices, of course, do not make a meal, but they make a meal more enjoyable and memorable. Games do the same, allowing teachers to interact with their students in a different way than they normally do. They also have the potential to challenge and assess students' understanding of content. Games allow teachers to "play" with their…
Descriptors: Science Instruction, Educational Games, Teaching Methods, Course Content
Rodriguez, Shelly; Morrison, Alex; Benfield, Patrick – Science and Children, 2019
This article describes a lesson rooted in "tinkering," an approach to learning that encourages the use of authentic, hands-on experience to develop an understanding of content and physical materials. There were several desired outcomes for this lesson. First, the authors felt that tinkering was an appropriate approach to investigating…
Descriptors: Grade 3, Elementary School Science, Science Instruction, Physics
Preston, Christine – Teaching Science, 2018
If you think physics is only for older children, think again. Much of the playtime of young children is filled with exploring--and wondering about and informally investigating--the way objects, especially toys, move. How forces affect objects, including: change in position, motion, and shape are fundamental to the big ideas in physics. This…
Descriptors: Science Instruction, Teaching Methods, Toys, Physics
Neumann, Maureen D.; Dion, Lisa – MIT Press, 2021
Computational thinking--a set of mental and cognitive tools applied to problem solving--is a fundamental skill that all of us (and not just computer scientists) draw on. Educators have found that computational thinking enhances learning across a range of subjects and reinforces students' abilities in reading, writing, and arithmetic. This book…
Descriptors: Thinking Skills, Computation, Problem Solving, Teaching Methods
Hewitt, Paul G. – Science Teacher, 2017
When teaching how "tension" and "compression" relate to geometrical structures such as bridges, arches, and domes, The author shows a picture of the Notre Dame Cathedral in Paris, completed in the 14th century, and presents a lesson on using the curve called a catenary to explain how he teaches about tension and compression…
Descriptors: Physics, Foreign Countries, Science Instruction, Teaching Methods
Stoeckel, Marta R. – Science Teacher, 2018
Along-standing energy lab involves dropping bouncy balls and measuring their rebound heights on successive bounces. The lab demonstrates a situation in which the mechanical energy of a system is not conserved. Although students enjoyed the lab, the author wanted to deepen their thinking about energy, including the connections to motion, with a new…
Descriptors: Energy, Science Instruction, Scientific Concepts, Misconceptions
Hewitt, Paul G. – Science Teacher, 2016
Examples of equilibrium are evident everywhere and the equilibrium rule provides a reasoned way to view all things, whether in static (balancing rocks, steel beams in building construction) or dynamic (airplanes, bowling balls) equilibrium. Interestingly, the equilibrium rule applies not just to objects at rest but whenever any object or system of…
Descriptors: Physics, Motion, Kinetics, Scientific Concepts
Low, David; Wilson, Kate – Teaching Science, 2017
On entry to university, high-achieving physics students from all across Australia struggle to identify Newton's third law force pairs. In particular, less than one in ten can correctly identify the Newton's third law reaction pair to the weight of (gravitational force acting on) an object. Most students incorrectly identify the normal force on the…
Descriptors: Misconceptions, Scientific Concepts, Scientific Principles, Physics
Miller, Jennifer – Science and Children, 2016
Jennifer Miller is a special education preschool teacher at Grant Elementary School in Muscatine, Iowa. In this article, she describes how she created and implemented a learning center with three-to-five-year-old students in an integrated morning class (nine students; four on IEPs) and an integrated afternoon class (10 students; four on IEPs) to…
Descriptors: Preschool Education, Preschool Teachers, Learning Centers (Classroom), Integrated Activities
Preston, Christine – Teaching Science, 2017
Familiar toys can be used to scaffold young children's learning about basic physics as well as guide scientific inquiry. Teachers looking for resources to engage young children and develop science inquiry skills need look no further than the toy box. In this two-part activity, children first construct a Lego® car and use it to explore the effects…
Descriptors: Scaffolding (Teaching Technique), Young Children, Toys, Physics
Johnson, Carla C., Ed.; Walton, Janet B., Ed.; Peters-Burton, Erin E., Ed. – NSTA Press, 2019
What if you could challenge your 11th graders to figure out the best response to a partial meltdown at a nuclear reactor in fictional Gammatown, USA? With this volume in the "STEM Road Map Curriculum Series," you can! "Radioactivity" outlines a journey that will steer your students toward authentic problem solving while…
Descriptors: Grade 11, High School Students, STEM Education, Nuclear Energy
Fadeev, Pavel – Physics Teacher, 2015
Movies are mostly viewed for entertainment. Mixing entertainment and physics gets students excited as we look at a famous movie scene from a different point of view. The following is a link to a fragment from the 2010 motion picture "Inception": http://www.youtube.com/watch?v=q3tBBhYJeAw. The following problem, based on images in facing…
Descriptors: Science Instruction, Physics, Films, Scientific Concepts

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