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Showing 1 to 15 of 17 results Save | Export
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Paul Bazelais; Gurinder Binner; Tenzin Doleck – Interactive Learning Environments, 2024
As an important tool for STEM education, online labs have gained significant research attention. However, our understanding of online labs is limited by the inattention to the factors that contribute to the acceptance of online labs. This study adopts the UTAUT model to investigate the salient determinants of use of online labs. We test the…
Descriptors: Foreign Countries, High School Students, College Bound Students, Physics
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Baker, Blane; Sherer, Maggie; Mossinghoff, Ben; Laycock, Will – Physics Teacher, 2022
A wood cantilever of length ~2.5 m is driven into resonance using the hand as a simple driver. Video recordings of these oscillations are analyzed to determine experimental second harmonic (n = 2) damped resonance frequencies. These frequencies are compared to theoretical ones, obtained from measurements of elastic moduli, damping properties, and…
Descriptors: Science Instruction, Science Laboratories, Science Experiments, Laboratory Experiments
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Kosenkov, Yana; Kosenkov, Dmitri – Journal of Chemical Education, 2021
A novel technology that employs computer vision (CV) to carry out an automatic titration experiment is presented. The experiment is designed to facilitate understanding of the basics of the CV technology and its application in chemistry among undergraduate students. The standard chemical procedure of titration has been chosen, since it is…
Descriptors: Undergraduate Students, Chemistry, Computer Uses in Education, Science Experiments
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Meintzer, Chris; Sutherland, Frances; Kennepohl, Dietmar K. – International Review of Research in Open and Distributed Learning, 2017
The Canadian Remote Sciences Laboratories (CRSL) website (www.remotelab.ca) was successfully employed in a study of the differences in the performance and perceptions of students' about their learning in the laboratory (in-person) versus learning at a remote location (remote access). The experiment was completed both in-person and via remote…
Descriptors: Science Laboratories, Foreign Countries, Student Evaluation, Distance Education
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Butlin, Chris A. – Physics Education, 2011
With the development of LabVIEW[TM] Education Edition schools can now provide experience of using this widely used software. Here, a few of the many applications that students aged around 11 years and over could develop are outlined in the resulting front panel screen displays and block diagrams showing the associated graphical programmes, plus a…
Descriptors: Science Laboratories, Distance Education, Computer Software, Computer Uses in Education
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Phipps, Linda R. – Journal of Chemical Education, 2013
An introductory, nonscience-majors chemistry course was converted to a Web-based course. The differences in student populations, teaching strategies, laboratory methods, and learning outcomes are described. Practical information is also given on the use of software and other online technology to implement course conversion. (Contains 2 tables.)
Descriptors: Nonmajors, Science Instruction, Web Based Instruction, Educational Technology
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Whalley, Peter; Kelley, Simon; Tindle, Andrew – Open Learning, 2011
Screen-based microscopes allow for a shared visualisation and task-directed conversations that offer significant pedagogic advantages for the science disciplines involving observation of natural samples such as the geosciences and biosciences, and particularly for distance education in these disciplines. The role and development of a virtual…
Descriptors: Open Universities, Distance Education, Earth Science, Laboratory Equipment
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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
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Falloon, Garry – Research in Learning Technology, 2012
This research studied a series of videoconference teaching workshops and virtual labs, which formed a component of a school-scientist partnership involving a New Zealand science research institute and year 13 students at a Wellington high school. It explored students' perceptions of the effectiveness of the videoconferences as an interactive…
Descriptors: Foreign Countries, Videoconferencing, Interactive Video, Synchronous Communication
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Dalgarno, Barney; Bishop, Andrea G.; Adlong, William; Bedgood, Danny R., Jr. – Computers & Education, 2009
Many have argued that interactive 3D virtual environments have great educational potential due to their ability to engage learners in the exploration, construction and manipulation of virtual objects, structures and metaphorical representations of ideas. Although learning benefits have been demonstrated in research settings, and substantial usage…
Descriptors: Distance Education, On Campus Students, Familiarity, Chemistry
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Schauer, Frantisek; Lustig, Frantisek; Dvorak, Jiri; Ozvoldova, Miroslava – European Journal of Physics, 2008
The present state of information communication technology makes it possible to devise and run computer-based e-laboratories accessible to any user with a connection to the Internet, equipped with very simple technical means and making full use of web services. Thus, the way is open for a new strategy of physics education with strongly global…
Descriptors: Physics, Educational Technology, Internet, Science Laboratories
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Mickle, James E.; Aune, Patricia M. – Journal of College Science Teaching, 2008
For distance-education students, the requirement for a laboratory course can present a significant hurdle to completing degree requirements. To better serve these nontraditional students, the authors developed a distance version of the laboratory course to provide a hands-on experience similar to that of on-campus students. In order to make the…
Descriptors: Nontraditional Students, Nonmajors, Distance Education, Laboratory Manuals
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Grober, Sebastian; Vetter, Martin; Eckert, Bodo; Jodl, Hans-Jorg – European Journal of Physics, 2007
The use of computers and multimedia, as well as the World Wide Web and new communication technologies, allows new forms of teaching and learning such as distance learning, blended learning, use of virtual libraries and many more. The herewith discussed remotely controlled laboratory (RCL) project shall offer an additional contribution. The basic…
Descriptors: Distance Education, Science Laboratories, Foreign Countries, Internet
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Lang, Daniela; Mengelkamp, Christoph; Jaeger, Reinhold S.; Geoffroy, Didier; Billaud, Michel; Zimmer, Thomas – European Journal of Engineering Education, 2007
This study investigates opportunities for conducting electrical engineering experiments via the Internet rather than in an actual laboratory. Eighty-four French students of electrical engineering (semester 1, 2004) at Bordeaux University 1 participated in practical courses. Half of the students performed experiments in a laboratory while the other…
Descriptors: Engineering Education, Internet, Science Experiments, Science Laboratories
Fishwick, W., Ed. – 1989
This book presents 16 papers on problems and innovations in postsecondary engineering education. An introduction discusses the major issues currently facing engineering education. Chapter 2 briefly reviews the papers which are grouped under topics. Three of thee papers comment on teaching non-technical matters and attitudes. Two papers point out…
Descriptors: Computer Assisted Instruction, Computer Networks, Computer Software, Computer Uses in Education
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