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José Luís Araújo; Isabel Saúde – Journal of Chemical Education, 2024
The rapid evolution of Artificial Intelligence (AI) is profoundly shaping our society. Among various AI tools, ChatGPT stands out for its user-friendly nature and wide accessibility to the public. However, despite their countless potential benefits, these tools also face significant challenges, especially in sensitive areas like Education. In this…
Descriptors: Artificial Intelligence, Technology Uses in Education, Natural Language Processing, Chemistry
Gerard G. Dumancas; Noemi Carreto; Oliver Generalao; Guoyi Ke; Ghalib Bello; Arnold Lubguban; Roberto Malaluan – Journal of Chemical Education, 2023
Chemometric techniques such as partial least-squares (PLS) regression have been applied with huge success to a wide array of chemical problems including multicomponent analysis of analytes in complex mixtures. Despite this, there are few examples of laboratory pedagogical exercises that involve students in the acquisition of chemical data from…
Descriptors: Undergraduate Students, College Science, Chemistry, Science Laboratories
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Sikora, Arthur; Irby, Stefan M.; Hall, Bonnie L.; Mills, Stephen A.; Koeppe, Julia R.; Pikaart, Michael J.; Wilner, Samantha E.; Craig, Paul A.; Roberts, Rebecca – Journal of Chemical Education, 2020
Campus shutdowns during the SARS-CoV-2 pandemic posed unique challenges to faculty and students engaged in laboratory courses. Formerly hands-on experiments had to be quickly pivoted to emergency remote learning. While some resources existed prior to this period, many currently available online modules and/or simulations focus on a single…
Descriptors: COVID-19, Pandemics, Distance Education, School Closing
Bell, Randy L. – Learning & Leading with Technology, 2005
The question of facilitating inquiry in the context of whole-class interactions versus individual work in the laboratory is not a new issue in science education. Science teachers have always been confronted with the question of the value added by the time and expense required for individual work in the science laboratory versus inquiry…
Descriptors: Computer Assisted Instruction, Science Instruction, Science Activities, Science Laboratories
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Bart, Henry Anthony – Journal of Geological Education, 1991
Describes a topographic map exercise designed for lab session of two to three hours in an introductory geology course. Students are taught the basic principles of topographic map construction and are then required to make a map of a section of campus. Author claims the approach has improved student test performance and resulted in a deeper…
Descriptors: Charts, Computer Assisted Instruction, Earth Science, Geology
Laws, Priscilla W. – 1989
This document reports a project, entitled Workshop Physics, that involved the development and testing of introductory physics materials to enable instructors to abandon the traditional separation of lecture and laboratory in favor of a workshop format. The Workshop Physics courses emphasize cognitive development enhanced by direct experience and…
Descriptors: College Science, Computer Assisted Instruction, Concept Formation, Higher Education
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Butler, William M.; Griffin, Henry C. – Journal of Chemical Education, 1979
The use of microcomputers in the undergraduate chemistry laboratory is presented. Examples are included which can be implemented in the PET 2001. (SA)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computers
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Pamula, F.; And Others – Biochemical Education, 1995
Describes an interactive computer program written to provide accurate and immediate feedback to students while they are processing experimental data. Discusses the problems inherent in laboratory courses that led to the development of this program. Advantages of the software include allowing students to work at their own pace in a nonthreatening…
Descriptors: Biochemistry, Competency Based Education, Computer Assisted Instruction, Computer Uses in Education
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Spencer, C. D.; Seligmann, P. F. – Physics Teacher, 1992
Describes a first-year laboratory course designed to fulfill laboratory objectives of reinforcing lecture material, teaching experimental methodology, developing hands-on skills, and imparting a sense of error. The course's six segments examine: digital electronics with students building a photogate timer; error analysis; linear accelerated…
Descriptors: Acceleration (Physics), Computer Assisted Instruction, High Schools, Higher Education