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Kim, J.; Bouman, L.; Cayruth, F.; Elliott, C.; Francis, B.; Gogo, E.; Hyman, C.; Marshall, A.; Masters, J.; Olano, W.; Paone, A.; Patel, K.; Richards, L.; Sbardella, C.; Snider, A.; Trinh, B.; Umari, F.; Wilks, H. – Physics Teacher, 2020
These days, smartphones are popular commodities among students in high school and college. Students carry their devices all the time, so why not use such a popular electronic device to measure physical quantities such as "g" in physics labs? In this work, we report a "multiple tasking" method, a measurement technique that we…
Descriptors: Physics, Science Instruction, Teaching Methods, Telecommunications
Stoet, Gijsbert – Teaching of Psychology, 2017
This article reviews PsyToolkit, a free web-based service designed for setting up, running, and analyzing online questionnaires and reaction-time (RT) experiments. It comes with extensive documentation, videos, lessons, and libraries of free-to-use psychological scales and RT experiments. It provides an elaborate interactive environment to use (or…
Descriptors: Questionnaires, Reaction Time, Experiments, Psychological Studies
Wisman, Raymond F.; Spahn, Gabriel; Forinash, Kyle – Physics Education, 2018
Data collection is a fundamental skill in science education, one that students generally practice in a controlled setting using equipment only available in the classroom laboratory. However, using smartphones with their built-in sensors and often free apps, many fundamental experiments can be performed outside the laboratory. Taking advantage of…
Descriptors: Science Instruction, Science Process Skills, Data Collection, Telecommunications
Brown, Todd; Brown, Katrina; Barnot, Vickilyn – Science Activities: Classroom Projects and Curriculum Ideas, 2012
Reaction time, the time between a stimulus and a person's reaction to it, is a concept familiar to most teenagers, particularly in the context of driving. We describe a simple inexpensive activity that utilizes students' creativity and invokes the scientific method in order to explore reaction time. The goal of the activity is to give students a…
Descriptors: Reaction Time, Physics, Science Instruction, Science Activities
G. Calza, Gratton, L. M.; Lopez-Arias, T.; Oss, S. – Physics Education, 2012
We construct a thermometer exploiting the electric resistance of the filament of a small lamp used in micro-illumination settings. The instrument may guarantee a response time better than 10 ms, i.e. much faster than commercial thermocouples or other quite expensive devices. This makes our thermometer a useful one in several processes which are…
Descriptors: Reaction Time, Heat, Energy, Light
Schneider, Darryl W.; Anderson, John R. – Cognitive Psychology, 2011
We propose and evaluate a memory-based model of Hick's law, the approximately linear increase in choice reaction time with the logarithm of set size (the number of stimulus-response alternatives). According to the model, Hick's law reflects a combination of associative interference during retrieval from declarative memory and occasional savings…
Descriptors: Reaction Time, Memory, Evaluation, Models
Roelofs, Ardi; Piai, Vitoria; Schriefers, Herbert – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2011
E. Dhooge and R. J. Hartsuiker (2010) reported experiments showing that picture naming takes longer with low- than high-frequency distractor words, replicating M. Miozzo and A. Caramazza (2003). In addition, they showed that this distractor-frequency effect disappears when distractors are masked or preexposed. These findings were taken to refute…
Descriptors: Attention Control, Attention, Experiments, Semantics
Huang, Chang-Qin; Duan, Ru-Lin; Tang, Yong; Zhu, Zhi-Ting; Yan, Yong-Jian; Guo, Yu-Qing – International Journal of Distance Education Technologies, 2011
The semantic web brings a new opportunity for efficient information organization and search. To meet the special requirements of the educational field, this paper proposes an intelligent search engine enabled by educational semantic support service, where three kinds of searches are integrated into Educational Information Intelligent Search (EIIS)…
Descriptors: Foreign Countries, Search Engines, Educational Technology, Reaction Time
Duyck, Wouter; Anseel, Frederik; Szmalec, Arnaud; Mestdagh, Pascal; Tavernier, Antoine; Hartsuiker, Robert J. – Journal of Experimental Psychology: Human Perception and Performance, 2008
In current cognitive psychology, naming latencies are commonly measured by electronic voice keys that detect when sound exceeds a certain amplitude threshold. However, recent research (e.g., K. Rastle & M. H. Davis, 2002) has shown that these devices are particularly inaccurate in precisely detecting acoustic onsets. In this article, the authors…
Descriptors: Reaction Time, Acoustics, Cognitive Psychology, Auditory Perception
Dreisbach, Gesine; Haider, Hilde – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2009
To pursue goal directed behavior, the cognitive system must be shielded against interference from irrelevant information. Aside from the online adjustment of cognitive control widely discussed in the literature, an additional mechanism of preventive goal shielding is suggested that circumvents irrelevant information from being processed in the…
Descriptors: Cognitive Processes, Foreign Countries, Stimuli, Reaction Time
Peeters, Christine M.; Deliever, Rik; De Vos, Dirk – Journal of Chemical Education, 2009
Synthesis of pure enantiomers is a key issue in industry, especially in areas connected to life sciences. Catalytic asymmetric synthesis has emerged as a powerful and practical tool. Here we describe an experiment on racemic reduction and asymmetric reduction via a catalytic hydrogen transfer process. Acetophenone and substituted acetophenones are…
Descriptors: Undergraduate Students, Reaction Time, Chemistry, Biological Sciences
Houghton, George; Pritchard, Rhys; Grange, James A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2009
Backward inhibition (BI) refers to a reaction time cost incurred when returning to a recently abandoned task compared to returning to a task not recently performed. The effect has been proposed to reflect an inhibitory mechanism that aids transition from one task to another. The question arises as to precisely what aspects of a task may be…
Descriptors: Stimuli, Reaction Time, Inhibition, Componential Analysis
Watson, Jane – Australian Mathematics Teacher, 2008
This author was surprised to read a short article in "The Mercury" newspaper in Hobart about blue-eyed people being more intelligent and brown-eyed people having faster reaction times. Such an article invites immediate scepticism from the statistically literate. The lack of data in the article should lead the interested reader to a…
Descriptors: Reaction Time, Human Body, Internet, Middle Schools
McDevitt, Margaret A. – Behavior Analyst Today, 2007
It is well known that the duration of the delay between a response and consequence is inversely related to the impact of that consequence on future responding, and even short delays can greatly undermine the effectiveness of a consequence. However, several studies have shown that delayed primary reinforcement can have a substantial impact on…
Descriptors: Program Effectiveness, Reinforcement, Influences, Reaction Time
Peer reviewedSchmitz, Guy – Journal of Chemical Education, 2005
The definition of reaction rate is derived and demonstrations are made for the care to be taken while using the term. Reaction rate can be in terms of a reaction property, the extent of reaction and thus it is possible to give a definition applicable in open and closed systems.
Descriptors: Chemistry, Science Education, Science Experiments, Stoichiometry
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