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Showing 1 to 15 of 18 results Save | Export
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Ramos, L. M.; Reis, C. R. N.; Calheiro, L. B.; Goncalves, A. M. B. – Physics Education, 2021
Using a joystick module, we followed the movement of a chaotic magnetic pendulum. The pendulum bar was attached to a joystick that served as a pivot point and biaxial angular motion sensor. Using an Arduino board, we could follow the position as a function of time along both the "x" and "y"-axis and draw a graph showing the…
Descriptors: Physics, Science Instruction, Computer Software, Motion
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Paul, Noel M.; Yoder, Ryan J.; Callam, Christopher S. – Journal of Chemical Education, 2019
Fluency in both the construction and interpretation of molecular structures is a critical learning objective in the second-year organic chemistry curriculum. With the introduction of PerkinElmer's ChemDraw structure drawing tool into undergraduate laboratory courses, students are challenged to develop fundamental molecular drawing skills using…
Descriptors: Organic Chemistry, Science Instruction, Computer Assisted Instruction, Computer Software
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Uz Bilgin, Cigdem; Tokel, S. Tugba – Journal of Educational Computing Research, 2019
The aim of this study was to investigate how the contextual vocabulary exploration processes of English as a Foreign Language learners can be facilitated in a mobile-supported situated learning environment. A Science and Technology Museum populated with interactive science experiments was chosen as the situated learning context. A mobile…
Descriptors: Vocabulary Development, Computer Assisted Instruction, Telecommunications, Museums
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Martini, Sheridan R.; Hartzell, Cynthia J. – Journal of Chemical Education, 2015
Computational chemistry is commonly addressed in the quantum mechanics course of undergraduate physical chemistry curricula. Since quantum mechanics traditionally follows the thermodynamics course, there is a lack of curricula relating computational chemistry to thermodynamics. A method integrating molecular modeling software into a semester long…
Descriptors: Science Instruction, Chemistry, Quantum Mechanics, College Science
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Abdulwahed, Mahmoud; Nagy, Zoltan K. – Computers & Education, 2011
This paper introduces a novel model of laboratory education, namely the TriLab. The model is based on recent advances in ICT and implements a three access modes to the laboratory experience (virtual, hands-on and remote) in one software package. A review of the three modes is provided with highlights of advantages and disadvantages of each mode.…
Descriptors: Undergraduate Students, Graduate Students, Science Laboratories, Cognitive Psychology
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Singh, Gurmukh; Siddiqui, Khalid; Singh, Mankiran; Singh, Satpal – Journal of Educational Technology Systems, 2011
The current research article is based on a simple and practical way of employing the computational power of widely available, versatile software MS Excel 2007 to perform interactive computer simulations for undergraduate/graduate students in biology, biochemistry, biophysics, microbiology, medicine in college and university classroom setting. To…
Descriptors: Heredity, Genetics, Biological Sciences, Medical Education
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Lombardi, S.; Monroy, G.; Testa, I.; Sassi, E. – Physics Education, 2010
A new procedure for performing quantitative measurements in teaching optics is presented. Application of the procedure to accurately measure the rate of change of the variable refractive index of a water-denatured alcohol mixture is described. The procedure can also be usefully exploited for measuring the constant refractive index of distilled…
Descriptors: Optics, Chemistry, Educational Technology, Science Instruction
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Ganci, S. – Physics Education, 2008
A well-known experiment for the measurement of the acceleration of gravity is carried out on a personal computer using standard software for a sound card in a non-canonical way, which provides an improved, more accurate, result and is a useful teaching method for a traditional classroom experiment. (Contains 3 figures and 1 footnote.)
Descriptors: Physics, Computer Software, Teaching Methods, Computer Assisted Instruction
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Kraftmakher, Yaakov – European Journal of Physics, 2008
The "quantum efficiency" (QE) is an important property of a light detector. This quantity can be determined in the undergraduate physics laboratory. The experimentally determined QE of a silicon photodiode appeared to be in reasonable agreement with expected values. The experiment confirms the quantum properties of light and seems to be a useful…
Descriptors: Physics, Light, Quantum Mechanics, Science Instruction
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Kong, Siu Cheung; Yeung, Yau Yuen; Wu, Xian Qiu – Computers & Education, 2009
In order to facilitate senior primary school students in Hong Kong to engage in learning by observation of the phenomena related to electrical circuits, a design of a specific courseware system, of which the interactive human-machine interface was created with the use of an open-source software called the LabVNC, for conducting online…
Descriptors: Observational Learning, Foreign Countries, Teaching Methods, Elementary School Students
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Bardar, Erin M.; Brecher, Kenneth – Astronomy Education Review, 2008
In this article, we present an overview of a suite of light and spectroscopy education materials developed as part of Project LITE (Light Inquiry Through Experiments). We also present an analysis of how introductory college astronomy students using these Project LITE materials performed on the Light and Spectroscopy Concept Inventory (LSCI)…
Descriptors: Computer Assisted Instruction, Spectroscopy, Light, Science Instruction
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Ketelhut, Diane Jass; Nelson, Brian C. – Educational Research, 2010
Background: Most policy doctrines promote the use of scientific inquiry in the K-12 classroom, but good inquiry is hard to implement, particularly for schools with fiscal and safety constraints and for teachers struggling with understanding how to do so. Purpose: In this paper, we present the design of a multi-user virtual environment (MUVE)…
Descriptors: Suburban Schools, Student Attitudes, Virtual Classrooms, Science Curriculum
Schmidt, Thomas G.; Place, Allen R. – Physiologist, 1985
Modeled after the program "Mastermind," this program teaches students the art of protein sequencing. The program (written in Turbo Pascal for the IBM PC, requiring 128K, a graphics adapter, and an 8070 mathematics coprocessor) generates a polypeptide whose sequence and length can be user-defined (for practice) or computer-generated (for…
Descriptors: Biochemistry, Biology, College Science, Computer Assisted Instruction
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Molitoris, Joseph J. – Journal of College Science Teaching, 1992
Discusses the use of computers in physics education as a tool in individual student research projects for simulating both simple and more complicated phenomena. Reviews IBM compatible software associated with computer-assisted instruction in physics education. (PR)
Descriptors: College Science, Computer Assisted Instruction, Computer Software Reviews, Higher Education
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Wepfer, William J.; Oehmke, Roger L. T. – Computers and Education, 1987
Describes a data acquisition system developed for an undergraduate engineering students' instructional laboratory at Georgia Tech. Special emphasis is placed on the design of an A/D Converter Board used to measure the viscosity and temperature of motor oil. The Simons' BASIC Program Listing for the Commodore 64 microcomputer is appended. (LRW)
Descriptors: Computer Assisted Instruction, Computer Software, Data Collection, Data Processing
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