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Wei, Jianye; Treagust, David F.; Mocerino, Mauro; Wallace, Andrew D.; Brown, Trevor C. – Journal of Chemical Education, 2022
A remote laboratory that measures the enthalpy of vaporization ([delta]"H"[subscript vap]°) and the entropy of vaporization ([delta]"S"[subscript vap]°) of "n"-octane was designed, constructed, and offered to second-year physical chemistry undergraduates at the University of New England (UNE) and Curtin University.…
Descriptors: Science Laboratories, College Science, Undergraduate Study, Science Experiments
Mercer, Conan; Leech, Donal – Journal of Chemical Education, 2018
This paper presents a system for remote monitoring of turbidity data that can detect light intensity and temperature using a microcontroller and the Internet of Things. The system comprises a light dependent resistor and infrared temperature sensor interfaced with an ESP-12E microcontroller, a programmable data acquisition platform; together these…
Descriptors: Science Instruction, Chemistry, Light, Heat
Ait Tahar, M.; Schadschneider, A.; Stollenwerk, J. – Physics Education, 2019
This article is about the development of an Internet-based remotely-controlled physical experiment, this is a part of the Remotely Controlled Laboratory at the University of Applied Sciences of Cologne known as TH Köln. The main experimental set-up is based on Pohl's Torsion Pendulum which was enhanced by a PXI measurement system and a webcam. In…
Descriptors: Educational Technology, Technology Uses in Education, Science Experiments, Science Laboratories
Silva, M. C.; Vilela, D. C.; Migoto, V. G.; Gomes, M. P.; Martin, I. M.; Germano, J. S. E. – Physics Education, 2017
Ionizing radiation one of modern physics experimental teaching in colleges and high school can be easily implemented today due to low coasts of detectors and also electronic circuits and data acquisition interfaces. First it is interesting to show to young's students what is ionizing radiation and from where they appears near ground level? How it…
Descriptors: Foreign Countries, High Schools, Secondary School Science, Science Instruction
Fung, Fun Man – Journal of Chemical Education, 2015
The current model of flipped classroom ensures that learning is not being restricted to the brick and mortar setting. Lessons can be conducted anywhere, anytime, as long as there is a good internet connection. Most of the flipped classroom and e-lectures are videos recording PowerPoint slides with a human voice as the audio instruction. In…
Descriptors: Chemistry, Science Laboratories, Blended Learning, Science Instruction
Persson, J. R.; Hagen, J. E. – Physics Education, 2011
Determining the acceleration of a free-falling object due to gravity is a standard experiment in physics. Different methods to do this have been developed over the years. This article discusses the use of video-analysis tools as another method. If there is a video available and a known scale it is possible to analyse the motion. The use of video…
Descriptors: Video Technology, Computer Uses in Education, Physics, Internet
Saxena, Sachin; Satsangee, Soami P. – Journal of Chemical Education, 2014
Remote access to real experiments is crucial for distance learners to experience the sciences. The exploitation of technology for this purpose is advantageous in global teaching and in exchange of ideas on a single front irrespective of distance barriers. Implementation of the distance method leads to cost-effective integrated-e-learning where…
Descriptors: Science Instruction, Distance Education, Chemistry, Science Experiments
Boswell, Paul G.; Stoll, Dwight R.; Carr, Peter W.; Nagel, Megan L.; Vitha, Mark F.; Mabbott, Gary A. – Journal of Chemical Education, 2013
High-performance liquid chromatography (HPLC) simulation software has long been recognized as an effective educational tool, yet many of the existing HPLC simulators are either too expensive, outdated, or lack many important features necessary to make them widely useful for educational purposes. Here, a free, open-source HPLC simulator is…
Descriptors: Science Instruction, College Science, Computer Assisted Instruction, Educational Technology
Shanks, Ryan A.; Southard, E. Megan; Tarnowski, Laura; Bruster, Matthew; Wingate, Stacia W.; Dalman, Nancy; Lloyd, Steven A. – Bioscene: Journal of College Biology Teaching, 2011
This article describes a laboratory experience utilizing videos to engage students in hypothesis-driven experimentation in behavioral neuroscience. It provides students with an opportunity to investigate the effects of chronic methamphetamine exposure on aggression in adult mice using a resident-intruder paradigm. Instructors and students only…
Descriptors: Video Technology, Hands on Science, Laboratories, Internet
de la Torre, L.; Sanchez, J.; Dormido, S.; Sanchez, J. P.; Yuste, M.; Carreras, C. – European Journal of Physics, 2011
FisL@bs is a network of remote and virtual laboratories for physics university education via the Internet that offers students the possibility of performing hands-on experiments in different fields of physics in two ways: simulation and real remote operation. This paper gives a detailed account of a novel way in physics in which distance learning…
Descriptors: Undergraduate Students, Distance Education, Physics, Science Laboratories
Grober, S.; Vetter, M.; Eckert, B.; Jodl, H. -J. – European Journal of Physics, 2010
The Rutherford scattering experiment plays a central role in working out atomic models in physics and chemistry. Nevertheless, the experiment is rarely performed at school or in introductory physics courses at university. Therefore, we realized this experiment as a remotely controlled laboratory (RCL), i.e. the experiment is set up in reality and…
Descriptors: Physics, Science Instruction, Science Experiments, Energy
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
Battle, Gary M.; Allen, Frank H.; Ferrence, Gregory M. – Journal of Chemical Education, 2010
A series of online interactive teaching units have been developed that illustrate the use of experimentally measured three-dimensional (3D) structures to teach fundamental chemistry concepts. The units integrate a 500-structure subset of the Cambridge Structural Database specially chosen for their pedagogical value. The units span a number of key…
Descriptors: Databases, Science Instruction, Scientific Concepts, Science Process Skills
Jain, Prashant K.; Gu, Yuxiang; Rizwan-uddin – Advances in Engineering Education, 2008
Internet extends the reach of existing laboratory and training infrastructure to beyond the walls of such facilities. Though nothing can replace the hands-on experience in a laboratory; a carefully developed web-based digital lab may be the next best thing. In some cases, there may be benefits associated with a "distance laboratory" that…
Descriptors: Engineering Technology, Internet, Virtual Classrooms, Science Laboratories
Le Roux, G. A. C.; Reis, G. B.; de Jesus, C. D. F.; Giordano, R. C.; Cruz, A. J. G.; Moreira, P. F., Jr.; Nascimento, C. A. O.; Loureiro, L. V. – Chemical Engineering Education, 2010
This paper describes the use of weblabs--web based experiments--for cooperative learning by students working together from two different locations to conduct experiments and write reports.
Descriptors: Cooperative Learning, Chemical Engineering, Teaching Methods, Educational Technology
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