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Showing all 12 results Save | Export
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Cross, Rod – Physics Education, 2018
A simple throwing task is described to illustrate various aspects of projectile motion. The task was to throw a tennis ball in a waste paper bin about 2 m away. Success depends on skill, but it also depends on the physics of the problem. If the ball is thrown underarm, then success depends primarily on the throw speed, which must be controlled to…
Descriptors: Accuracy, Task Analysis, Motion, Racquet Sports
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Frank, Brian W. – Physics Teacher, 2018
The goal of this paper is to illustrate different ways that cardsorting activities (or "card stacks") can be implemented in the introductory physics classroom, along with various tips and resources for getting started. My first attempt at developing a card stack came about from simply wanting to try out a fun way to change student…
Descriptors: Task Analysis, Problem Sets, Introductory Courses, Physics
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Goodhew, Lisa M.; Robertson, Amy D.; Heron, Paula R. L.; Scherr, Rachel E. – Physical Review Physics Education Research, 2021
Resources theory assumes that resource activation is context sensitive, and that an important dimension of context is the question students are answering. The context sensitivity of resource activation has been demonstrated empirically by case studies that show students using different resources to answer questions that are similar in focus. In…
Descriptors: Physics, Science Instruction, Motion, Teaching Methods
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Holub, Jordan; Kruse, Jerrid; Menke, Lucas – Science and Children, 2019
In this article, the authors focus on students constructing observations of patterns to understand how surfaces affect the motion of an object. Students will use the patterns they observe to predict future motion of marbles (NGSS Lead States 2013). Students then apply their learning by engaging in an engineering task. By giving students a task to…
Descriptors: Science Instruction, Teaching Methods, Motion, Physics
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Chin, Doris B.; Chi, Min; Schwartz, Daniel L. – Instructional Science: An International Journal of the Learning Sciences, 2016
A common approach for introducing students to a new science concept is to present them with multiple cases of the phenomenon and ask them to explore. The expectation is that students will naturally take advantage of the multiple cases to support their learning and seek an underlying principle for the phenomenon. However, the success of such tasks…
Descriptors: Physics, Science Instruction, Active Learning, Comparative Analysis
Chin, Doris B.; Chi, Min; Schwartz, Daniel L. – Grantee Submission, 2016
A common approach for introducing students to a new science concept is to present them with multiple cases of the phenomenon and ask them to explore. The expectation is that students will naturally take advantage of the multiple cases to support their learning and seek an underlying principle for the phenomenon. However, the success of such tasks…
Descriptors: Active Learning, Comparative Analysis, Middle School Students, Motion
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Leman, Patrick J.; Skipper, Yvonne; Watling, Dawn; Rutland, Adam – Child Development, 2016
Three hundred and forty-one children (M[subscript age] = 9,0 years) engaged in a series of science tasks in collaborative, same-sex pairs or did not interact. All children who collaborated on the science tasks advanced in basic-level understanding of the relevant task (motion down an incline). However, only boys advanced in their conceptual…
Descriptors: Child Development, Gender Differences, Science Activities, Task Analysis
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Nakamoto, Hiroki; Mori, Shiro – Brain and Cognition, 2012
The present study was conducted to examine the relationship between expertise in movement correction and rate of movement reprogramming within limited time periods, and to clarify the specific cognitive processes regarding superior reprogramming ability in experts. Event-related potentials (ERPs) were recorded in baseball experts (n = 7) and…
Descriptors: Expertise, Team Sports, Physics, Inhibition
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Siegler, Isabelle A.; Bardy, Benoit G.; Warren, William H. – Journal of Experimental Psychology: Human Perception and Performance, 2010
The simple task of bouncing a ball on a racket offers a model system for studying how human actors exploit the physics and information of the environment to control their behavior. Previous work shows that people take advantage of a passively stable solution for ball bouncing but can also use perceptual information to actively stabilize bouncing.…
Descriptors: Physics, Thinking Skills, Task Analysis, Experiments
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Chen, Yu-ping; Keen, Rachel; Rosander, Kerstin; Von Hofsten, Claes – Child Development, 2010
Kinematic measures of children's reaching were found to reflect stable differences in skill level for planning for future actions. Thirty-five toddlers (18-21 months) were engaged in building block towers (precise task) and in placing blocks into an open container (imprecise task). Sixteen children were retested on the same tasks a year later.…
Descriptors: Physics, Toddlers, Task Analysis, Time Factors (Learning)
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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
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Poduska, Ervin; Phillips, Darrell G. – Journal of Research in Science Teaching, 1986
Describes a study of the mental processes college students use in thinking about speed. Piagetian-type tasks dealing with speed, time, and distance were used in an individual interview format. Males outperformed females on tasks relating to speed, but not on the other tasks. (TW)
Descriptors: Cognitive Processes, College Science, Difficulty Level, Distance