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Showing 1 to 15 of 19 results Save | Export
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Hernández, Irene Tovar; Vaquero, José Manuel – Physics Teacher, 2023
Old physics textbooks give us a great opportunity to learn about the history of science and rediscover different methods to teach physics to our students. There are many disused and forgotten experiments in them, but these can still be very useful to affirm and understand physics. This is the case of an instrument used in the 19th century to…
Descriptors: Science Education, Physics, Science History, Scientific Concepts
Way, Jennifer; Ginns, Paul – Mathematics Education Research Group of Australasia, 2022
Previous psychological, neuroscientific, and educational research indicates that a focus on individual haptic modes of learning (touch, body movement, gesture, tracing), and on the development of emerging mathematical and scientific drawing, can enhance children's learning in mathematics and science. However, most of these studies have focused on…
Descriptors: Tactual Perception, Mathematics Education, Science Education, Freehand Drawing
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Wee, Loo Kang; Lee, Tat Leong; Chew, Charles; Wong, Darren; Tan, Samuel – Physics Education, 2015
This paper reports a computer model simulation created using Easy Java Simulation (EJS) for learners to visualize how the steady-state amplitude of a driven oscillating system varies with the frequency of the periodic driving force. The simulation shows (N = 100) identical spring-mass systems being subjected to (1) a periodic driving force of…
Descriptors: Foreign Countries, Computer Simulation, Physics, Motion
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Haglund, Jesper; Jeppsson, Fredrik; Ahrenberg, Lars – Research in Science Education, 2015
Science education research suggests that our everyday intuitions of motion and interaction of physical objects fit well with how physicists use the term "momentum". Corpus linguistics provides an easily accessible approach to study language in different domains, including everyday language. Analysis of language samples from English text…
Descriptors: Science Education, Motion, Physics, Scientific Concepts
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Amrani, D. – Physics Education, 2013
This paper deals with the comparison of sound speed measurements in air using two types of sensor that are widely employed in physics and engineering education, namely a pressure sensor and a sound sensor. A computer-based laboratory with pressure and sound sensors was used to carry out measurements of air through a 60 ml syringe. The fast Fourier…
Descriptors: Physics, Engineering Education, Comparative Analysis, Intervals
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Coelho, Ricardo Lopes – Science & Education, 2013
It is generally accepted nowadays that History and Philosophy of Science (HPS) is useful in understanding scientific concepts, theories and even some experiments. Problem-solving strategies are a significant topic, since students' careers depend on their skill to solve problems. These are the reasons for addressing the question of whether problem…
Descriptors: Logical Thinking, Introductory Courses, Scientific Concepts, Problem Solving
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Thomas, Laura E.; Seiffert, Adriane E. – Cognition, 2010
Investigations of multiple-object tracking aim to further our understanding of how people perform common activities such as driving in traffic. However, tracking tasks in the laboratory have overlooked a crucial component of much real-world object tracking: self-motion. We investigated the hypothesis that keeping track of one's own movement…
Descriptors: Investigations, Attention, Motion, Task Analysis
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De Sa Teixeira, Nuno; Oliveira, Armando Monica; Amorim, Michel-Ange – Psicologica: International Journal of Methodology and Experimental Psychology, 2010
Representational Momentum (RepMo) refers to the phenomenon that the vanishing position of a moving target is perceived as displaced ahead in the direction of movement. Originally taken to reflect a strict internalization of physical momentum, the finding that the target implied mass did not have an effect led to its subsequent reinterpretation as…
Descriptors: Investigations, Figurative Language, Physics, Motion
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Kocakulah, Mustafa Sabri – Journal of Science Education and Technology, 2010
This study aims to develop and apply a rubric to evaluate the solutions of pre-service primary science teachers to questions about Newton's Laws of Motion. Two groups were taught the topic using the same teaching methods and administered four questions before and after teaching. Furthermore, 76 students in the experiment group were instructed…
Descriptors: Control Groups, Scientific Concepts, Academic Achievement, Motion
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Li, Qing – Educational Research, 2010
Background: The emergence of a participatory culture, brought about mainly by the use of Web2.0 technology, is challenging us to reconsider aspects of teaching and learning. Adapting the learning-as-digital-game-building approach, this paper explores how new educational practices can help students build skills for the 21st century. Purpose: This…
Descriptors: Instructional Design, Student Attitudes, Educational Practices, Motion
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Hassani, Sadri – Physics Education, 2005
This article examines an amusing application of the concept of kinetic energy. Using some rudimentary physical notions, we have analysed the energetics of the motion of Santa Claus. The results, which are quite surprising, can be of interest to high school and early college physics educators when they teach kinetic energy, and energy conservation…
Descriptors: Science Education, Energy Conservation, Kinetics, Energy
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Daw, Harold A. – Physics Teacher, 1991
Evaluates the technical efficacy of the V-Scope in measuring motion produced by a phonograph turntable, a template furnished by the manufacturer, a free-fall apparatus, some pendula, a gyroscope, and three air tables. Concludes that the V-Scope gives excellent results and is easy to use. (MDH)
Descriptors: Courseware, High Schools, Instructional Material Evaluation, Measurement Equipment
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Carson, Robert; Rowlands, Stuart – Science & Education, 2005
Force in modern classical mechanics is unique, both in terms of its logical character and the conceptual difficulties it causes. Force is well defined by a set of axioms that not only structures mechanics but science in general. Force is also the dominant theme in the "misconceptions" literature and many philosophers and physicists alike have…
Descriptors: Physics, Misconceptions, Motion, Science Instruction
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Seker, Hayati; Welsh, Laura C. – Science & Education, 2006
This paper reports a 4-month study that investigated the effectiveness of curriculum materials incorporating the history of science (HOS) on learning science, understanding the nature of science (NOS), and students' interest in science. With regards to these objectives, three different class contexts were developed with three main types of…
Descriptors: Scientific Principles, Student Interests, Science Interests, Motion
Stead, Keith; Osborne, Roger – 1980
One area explored in the second (in-depth) phase of the Learning in Science Project was "children's science," defined as views of the world and the meanings for words that children have and bring with them to science lessons. The investigation reported focuses on students' thinking regarding their views on friction. Students (N=47) were…
Descriptors: Cognitive Processes, Comprehension, Concept Formation, Curriculum Development
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