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Showing 1 to 15 of 17 results Save | Export
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Nichole Orench-Rivera; April Bednarski; Paul Craig; Austin Talbot – Journal of College Science Teaching, 2025
Advancements in computation and machine learning have revolutionized science, enabling researchers to address once insurmountable challenges. Bioinformatics, a field that heavily relies on computer-driven analysis of biological data, has greatly benefited from these developments. However, traditional bioinformatics instruction frequently lacks the…
Descriptors: Coding, Computer Science Education, Integrated Curriculum, Programming
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David L. Myers; Marc Hill; Brooke Baughman; Eugene T. Smith – Journal of Chemical Education, 2023
This exercise encompassed the construction and use of a microcontroller-based laser refractometer. The instrument, which does not require a high skill level to build, primarily consisted of a line laser, optical sensor, several 3-D printed parts and printed circuit boards, and a microcontroller development board. Construction and testing of the…
Descriptors: Open Education, Lasers, Shared Resources and Services, Printing
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Navarre, Edward C. – Journal of Chemical Education, 2020
A simple computer interface for controlling a compact spectrograph for use as a spectrophotometer in an undergraduate teaching laboratory was developed. The project was implemented on a Raspberry Pi computer which permits the integration of a light source into the software. The interface was written in Python to facilitate modification by the user…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Students
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Li, Yuguang C.; Melenbrink, Elizabeth L.; Cordonier, Guy J.; Boggs, Christopher; Khan, Anupama; Isaac, Morko Kwembur; Nkhonjera, Lameck Kabambalika; Bahati, David; Billinge, Simon J.; Haile, Sossina M.; Kreuter, Rodney A.; Crable, Robert M.; Mallouk, Thomas E. – Journal of Chemical Education, 2018
This paper presents a teaching kit that combines the fabrication of a low-cost microcontroller-based potentiostat and a LabVIEW-generated graphical user interface. The potentiostat enables undergraduate-level students to learn electroanalytical techniques and characterize energy conversion devices such as solar cells. The purpose of this teaching…
Descriptors: Computer Software, Chemistry, Science Instruction, Computer Graphics
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Hui, Kaleonui J.; Coney, John P.; Binder, P.-M. – Physics Teacher, 2016
In PASCO's Technical Article #763, it is stated that "PASCO [also] makes sensors with an 8-pin DIN connector. These sensors cannot be used with the Vernier interfaces, as they have different power requirements." Recently we had the need to make such connections in a 10-station freshman lab. Since the Vernier input is a 6-way BT 631A plug…
Descriptors: Science Laboratories, Science Experiments, Laboratory Equipment, Computer Interfaces
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Jagodzinski, Piotr; Wolski, Robert – Journal of Science Education and Technology, 2015
Natural User Interfaces (NUI) are now widely used in electronic devices such as smartphones, tablets and gaming consoles. We have tried to apply this technology in the teaching of chemistry in middle school and high school. A virtual chemical laboratory was developed in which students can simulate the performance of laboratory activities similar…
Descriptors: Computer Simulation, Virtual Classrooms, Science Laboratories, Computer Interfaces
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Carvalho-Knighton, Kathleen M.; Smoak, Joseph M. – International Journal of Environmental and Science Education, 2009
The aim of this study was to investigate if integrating basic analytical methods and computer interface technology would result in a positive change in student attitude. Students' self-concept of science knowledge and skills (Capability), opinion towards science (Affect), and perceptions of the value of science (Value) were determined with…
Descriptors: Water Quality, Student Attitudes, Computer Interfaces, Test Construction
Johnson, L.; Adams Becker, S.; Cummins, M.; Freeman, A.; Ifenthaler, D.; Vardaxis, N. – New Media Consortium, 2013
The "Technology Outlook Australian Tertiary Education 2013-2018: An NMC Horizon Project Regional Analysis" reflects a collaborative research effort between the New Media Consortium (NMC) and Open Universities Australia to help inform Australian educational leaders about significant developments in technologies supporting teaching,…
Descriptors: Foreign Countries, Educational Policy, Higher Education, Consortia
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Marcum-Dietrich, Nanette I.; Ford, Danielle – Science Teacher, 2003
Describes a teaching method using computer probeware to enhance students' laboratory experiences. Discusses the role of computer probeware in the science classroom, how probeware affects learning, and how it affects efficiency. (KHR)
Descriptors: Computer Interfaces, Computer Uses in Education, Science Activities, Science Instruction
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Carlton, Kevin – Physics Education, 2002
Computers are routinely used to control experiments in modern science laboratories. This should be reflected in laboratories in an educational setting. There is a mismatch between the power that can be delivered by a computer interfacing card or a TTL logic circuit and that required by many practical pieces of laboratory equipment. One common way…
Descriptors: Science Education, Computer Uses in Education, Science Laboratories, Laboratory Equipment
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Salumbides, Edcel John; Maristela, Joyce; Uy, Alfredson; Karremans, Kees – American Journal of Physics, 2002
Introduces an alternative method to determine the mechanics of a moving object that uses computer vision algorithms with a charge-coupled device (CCD) camera as a recording device. Presents two experiments, pendulum motion and terminal velocity, to compare results of the alternative and conventional methods. (YDS)
Descriptors: Computer Interfaces, Computer Uses in Education, Higher Education, Laboratory Experiments
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Millar, Mark – Science Teacher, 2005
Many varieties of data acquisition systems are now available for science classrooms. Most systems consist of a range of sensors--typically called probeware--connected to an interface unit usually described as a datalogger due to its capacity to record data from these sensors. Although some systems operate independently, most units connect to a…
Descriptors: Science Laboratories, Science Instruction, Teaching Methods, Science Teachers
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Hisim, Nusret – Science Teacher, 2005
Probeware is increasingly being implemented in science classrooms because it is less expensive than it used to be and improvements in hardware and software have made it more accessible to students and teachers. Many probes or sensors can now simply be connected to a computer, calculator, or other handheld device, and will immediately begin to…
Descriptors: Teaching Methods, Science Experiments, Science Teachers, Inquiry
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Trumper, Ricardo – Journal of Computers in Mathematics and Science Teaching, 1997
Studies the effect of V-Scope activities on the performance of 11th-grade students in analyzing kinematics graphs. Students were challenged to construct different kinds of graphs using their own movements as well as the motion of a dynamics cart. Results indicate that the V-Scope kinematics laboratory activities can promote kinematics concepts and…
Descriptors: Acceleration (Physics), Computer Interfaces, Computer Uses in Education, Graphs
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Matlock, Daniel B.; Safford, Duane C. – Journal of College Science Teaching, 1989
Explains the use of the microcomputer as a multipurpose analytical instrument which frees students from the mechanics of science and allows for more active learning involvement. Provides the typical data acquisition configuration, advantages, disadvantages, and a brief summary. (RT)
Descriptors: College Science, Computer Interfaces, Computer Literacy, Computer Uses in Education
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