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Caplan, Seth; Johnson, Dano; Vondracek, Mark – Physics Teacher, 2015
The 1884 book "Flatland: A Romance of Many Dimensions," written by Edwin Abbott, has captured the interest of numerous generations, and has also been used in schools to help students learn and think about the concept of dimension in a creative, fun way. In 2007, a film was released called "Flatland: The Movie," and over one…
Descriptors: Motion, Science Instruction, Physics, Teaching Methods
Van Meeteren, Beth Dykstra, Ed. – Teachers College Press, 2022
Children are intrigued by moving objects, even more so when they can engineer the movement. This volume in the STEM for Our Youngest Learners Series uses Ramps and Pathways as a context to provide children ages 3-8 with opportunities to engage in STEM every day. Ramps and Pathways is a meaningful and fun way for children to develop engineering…
Descriptors: STEM Education, Teaching Methods, Vignettes, Communities of Practice
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
Rohr, Jim; Lopez, Veronica; Rohr, Tyler – Physics Teacher, 2014
While observing the bounce heights of various kinds of sports balls dropped from different heights onto a variety of surfaces, we thought of the following question: Could measurements of drop and bounce heights of balls of different diameters, but of the same material, falling from different heights, but on the same surface, be expressed by a…
Descriptors: Reflection, Mathematical Formulas, Class Activities, Science Experiments
De Sá Teixeira, Nuno; Oliveira, Armando Mónica – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2014
The spatial memory for the last position occupied by a moving target is usually displaced forward in the direction of motion. Interpreted as a mental analogue of physical momentum, this phenomenon was coined "representational momentum" (RM). As momentum is given by the product of an object's velocity and mass, both these factors came to…
Descriptors: Bias, Physics, Scientific Concepts, Motion
Adams, Deanne M.; Pilegard, Celeste; Mayer, Richard E. – Journal of Educational Computing Research, 2016
Learning physics often requires overcoming common misconceptions based on naïve interpretations of observations in the everyday world. One proposed way to help learners build appropriate physics intuitions is to expose them to computer simulations in which motion is based on Newtonian principles. In addition, playing video games that require…
Descriptors: Video Games, Teaching Methods, Technology Uses in Education, Simulated Environment
Vallett, David Bruce – ProQuest LLC, 2013
This study examined the relationships among visuospatial ability, motivation to learn science, and learner conceptions of force across commonly measured demographics with university undergraduates with the aim of examining the support for an evolved sense of force and motion. Demographic variables of interest included age, ethnicity, and gender,…
Descriptors: Science Education, Spatial Ability, Visual Perception, Learning Motivation
Candela, Antonia – Cultural Studies of Science Education, 2010
This is an ethnographic study of the trajectories and itineraries of undergraduate physics students at a Mexican university. In this work learning is understood as being able to move oneself and, other things (cultural tools), through the space-time networks of a discipline (Nespor in Knowledge in motion: space, time and curriculum in…
Descriptors: Undergraduate Students, Ethnography, Physics, Motion
Motes, Michael A.; Hubbard, Timothy L.; Courtney, Jon R.; Rypma, Bart – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2008
Research has shown that spatial memory for moving targets is often biased in the direction of implied momentum and implied gravity, suggesting that representations of the subjective experiences of these physical principles contribute to such biases. The present study examined the association between these spatial memory biases. Observers viewed…
Descriptors: Motion, Memory, Spatial Ability, Physics
Kozhevnikov, Maria; Motes, Michael A.; Hegarty, Mary – Cognitive Science, 2007
Three studies were conducted to examine the relation of spatial visualization to solving kinematics problems that involved either predicting the two-dimensional motion of an object, translating from one frame of reference to another, or interpreting kinematics graphs. In Study 1, 60 physics-naive students were administered kinematics problems and…
Descriptors: Visualization, Motion, Graphs, Eye Movements
Noble, Tracy – 2003
This paper investigates one high school student's use of gestures in an interview context in which he worked on the problem of understanding graphical representations of motion. The goal of the investigation was to contribute a detailed analysis of the process of learning as it occurred over a short time period in order to contribute to the…
Descriptors: Body Language, Graphs, Kinesthetic Perception, Mathematics Education