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Freudenrich, Craig – Science Teacher, 2005
Since 1995, astronomers have discovered over 100 known exoplanets--planets outside of the solar system--and determined their properties such as mass, orbital distance, size, and density. By using simple algebraic equations of physics, students can determine these properties as well. In this article, the author discusses an activity titled…
Descriptors: Teaching Methods, Motion, Grade 12, Astronomy
Cowens, John – Teaching Pre K-8, 2005
From wind-stirred ripples to "large waves in a harbor," this paper describes science projects that can help students learn about and create their own ocean motion.
Descriptors: Motion, Science Activities, Science Instruction, Creative Teaching
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Rakison, David H. – Developmental Psychology, 2006
In 3 experiments, the author investigated 16- to 20-month-old infants' attention to dynamic and static parts in learning about self-propelled objects. In Experiment 1, infants were habituated to simple noncausal events in which a geometric figure with a single moving part started to move without physical contact from an identical geometric figure…
Descriptors: Infants, Experiments, Visual Learning, Geometric Concepts
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Le Grand, Richard; Cooper, Philip A.; Mondloch, Catherine J.; Lewis, Terri L.; Sagiv, Noam; de Gelder, Beatrice; Maurer, Daphne – Brain and Cognition, 2006
Developmental prosopagnosia (DP) is a severe impairment in identifying faces that is present from early in life and that occurs despite no apparent brain damage and intact visual and intellectual function. Here, we investigated what aspects of face processing are impaired/spared in developmental prosopagnosia by examining a relatively large group…
Descriptors: Neurological Impairments, Motion, Perceptual Impairments, Recognition (Psychology)
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Durgin, Frank H.; Gigone, Krista; Scott, Rebecca – Journal of Experimental Psychology: Human Perception and Performance, 2005
During self-motion, the world normally appears stationary. In part, this may be due to reductions in visual motion signals during self-motion. In 8 experiments, the authors used magnitude estimation to characterize changes in visual speed perception as a result of biomechanical self-motion alone (treadmill walking), physical translation alone…
Descriptors: Physical Activities, Visual Perception, Motion, Kinetics
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Groetsch, C. W. – International Journal of Mathematical Education in Science and Technology, 2004
The origin of the function concept is usually traced to Galileo's work on motion. We argue that specific proto-function concepts appeared in the work of Tartaglia a century before the publication of Galileo's Two New Sciences. The study of Tartaglia's ideas can be used in the classroom as a historical introduction to various function concepts,…
Descriptors: Mathematics Instruction, Mathematical Concepts, Mathematics, History
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Biener, Zvi; Smeenk, Chris – Science & Education, 2004
Teaching Newtonian physics involves the replacement of students' ideas about physical situations with precise concepts appropriate for mathematical applications. This paper focuses on the concepts of "matter" and "mass". We suggest that students, like some pre-Newtonian scientists we examine, use these terms in a way that conflicts with their…
Descriptors: Mechanics (Physics), Mathematical Applications, Scientific Principles, Science Instruction
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Gauld, Colin – Science & Education, 2004
The treatment of pendulum motion in early 18th century Newtonian textbooks is quite different to what we find in today's physics textbooks and is based on presuppositions and mathematical techniques which are not widely used today. In spite of a desire to present Newton's new philosophy of nature as found in his "Principia" 18th century textbook…
Descriptors: Science History, Textbooks, Physics, Motion
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Nola, Robert – Science & Education, 2004
It is argued that Galileo made an important breakthrough in the methodology of science by considering idealized models of phenomena such as free fall, swinging pendula and the like, which can conflict with experience. The idealized models are constructs largely by our reasoning processes applied to the theoretical situation at hand. On this view,…
Descriptors: Constructivism (Learning), Models, Science Instruction, Scientific Principles
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Bond, Trevor G. – Science & Education, 2004
Piaget's investigations into children's understanding of the laws governing the movement of a simple pendulum were first reported in 1955 as part of a report into how children's knowledge of the physical world changes during development. Chapter 4 of Inhelder & Piaget (1955/1958) entitled "The Oscillation of a Pendulum and the Operations of…
Descriptors: Scientific Methodology, Motion, Mechanics (Physics), Science Instruction
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Sullivan, Megan – Science Teacher, 2005
If you are an athlete or sports enthusiast, you know that every second counts. To find that 1-2% improvement that can make the difference between 1st and 5th place, sport biomechanists use science to investigate sports techniques and equipment, seeking ways to improve athlete performance and reduce injury risk. In essence, they want athletes to…
Descriptors: Research Needs, Biomechanics, Athletes, Injuries
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Johnston, Heather Moynihan; Jones, Mari Riess – Journal of Experimental Psychology: Human Perception and Performance, 2006
Representational momentum refers to the phenomenon that observers tend to incorrectly remember an event undergoing real or implied motion as shifted beyond its actual final position. This has been demonstrated in both visual and auditory domains. In 5 pitch discrimination experiments, listeners heard tone sequences that implied either linear,…
Descriptors: Recall (Psychology), Experimental Psychology, Auditory Discrimination, Auditory Stimuli
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Gray, Rob; Sieffert, Randy – Journal of Experimental Psychology: Human Perception and Performance, 2005
Previous studies on ball catching have had the limitation that the catcher was restricted to lateral hand movements. The authors investigated catching behavior in the more natural situation in which hand movements were unconstrained. Movements of the hand were tracked as participants tried to "catch" an approaching ball simulated with changing…
Descriptors: Motion, Human Body, Psychomotor Skills, Cues
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Stodden, David F.; Langendorfer, Stephen J.; Fleisig, Glenn S.; Andrews, James R. – Research Quarterly for Exercise and Sport, 2006
The purposes of this study were to: (a) examine differences within specific kinematic variables and ball velocity associated with developmental component levels of step and trunk action (Roberton & Halverson, 1984), and (b) if the differences in kinematic variables were significantly associated with the differences in component levels, determine…
Descriptors: Motion, Physical Activities, Barriers, Skill Development
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Aznar-Casanova, J. Antonio; Quevedo, Lluisa; Sinnett, Scott – Psicologica: International Journal of Methodology and Experimental Psychology, 2005
Dynamic Visual Acuity (DVA) can be measured from two types of equivalently considered movement referred to as drifting-motion and displacement-motion. Displacement motion can be best described as the horizontal displacement of a stimulus, thus implying pursuit eye movements, and involves moving the stimulus from the fixation point of gaze towards…
Descriptors: Eye Movements, Visual Acuity, Motion, Human Body
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