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Brittney Heibel; Ryan Anderson; Marshall Swafford; Bradley Borges – Journal of Agricultural Education, 2024
Incorporating virtual reality (VR) technology into training environments has been effective as it allows training to remain safe, efficient, and meaningful. Welding training is no exception, with research highlighting benefits such as decreased welder anxiety, increased cost- and time-efficiency, reduction in material usage, and advanced levels of…
Descriptors: Computer Simulation, Computer Uses in Education, Computer Assisted Instruction, Welding
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Heidy Rico; Mario de la Puente; Carlos de Oro; Daniela Navarro; Juan Lambis; Guillermo Londoño – Open Education Studies, 2024
This academic inquiry examines the efficacy of virtual reality (VR)-based pedagogy for higher learning, specifically analyzing immersive digital instruction for rural agriculture undergraduates studying soil science in Colombia. The investigation tests two hypotheses: first, simulated learning situations improve academic achievement and student…
Descriptors: Foreign Countries, Undergraduate Students, Agricultural Education, Soil Science
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Justin Pulley; Dee Jepsen; Amanda Bowling; Tracy Kitchel – Journal of Agricultural Education, 2025
Agriculture is one of the most hazardous industries in the United States for all workers, and even more so for young workers. In the U.S., legislation prescribes training for youth under the age of 16 working in hazardous situations in production agriculture. Virtual Reality (VR) technology has become an increasingly popular means of deploying…
Descriptors: Agricultural Education, Agricultural Machinery, Agriculture, Safety
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McCaskey, Michael J.; And Others – Journal of Studies in Technical Careers, 1989
Achievement test scores from 144 Missouri students were used to assess the instructional effectiveness of a microcomputer simulation in teaching a secondary vocational agriculture course. Microcomputer simulation as a teaching strategy was shown to be as effective as the normal lecture/discussion method. (Author/JOW)
Descriptors: Agricultural Education, Computer Assisted Instruction, Computer Simulation, Instructional Effectiveness
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Boyd, Barry L.; Murphrey, Theresa Pesl – Journal of Agricultural Education, 2002
Students taught leadership and ethics using asynchronous computer simulation (n=83) were compared with 113 taught conventionally. The treatment group performed better on questions written at the knowledge, comprehension, and analysis levels of Bloom's Taxonomy, regardless of learning mode preferences. (Contains 26 references.) (SK)
Descriptors: Agricultural Education, Cognitive Style, Computer Assisted Instruction, Computer Simulation
Birkenholz, Robert, Ed.; And Others – Agricultural Education Magazine, 1992
Six theme articles address computer-assisted design in landscaping, simulation in agricultural education, Macintosh's HyperCard, computer labs for agribusiness, and using a portable computer to evaluate classroom performance. (SK)
Descriptors: Agribusiness, Agricultural Education, Computer Assisted Instruction, Computer Centers
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Huck, M. G.; Hoeft, R. G. – Journal of Natural Resources and Life Sciences Education, 1994
Describes a computer model characterizing the balance of soil-plant Nitrogen that allows students to see the likely consequences of different biological and weather-related parameters. Proposes three uses for the model: (1) orienting beginning students to understand the soil Nitrogen cycle; (2) providing information for advanced students; and (3)…
Descriptors: Agricultural Education, Biochemistry, Biological Sciences, Computer Assisted Instruction
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Cross, Tim L. – Journal of Natural Resources and Life Sciences Education, 1993
Describes a recently developed microcomputer-based farm management game called AgVenture. The objective of the program is to allow students to practice making management decisions for a model crop farm to teach risk management and reinforce traditional farming management principles. (MDH)
Descriptors: Agricultural Education, Agricultural Production, Computer Assisted Instruction, Computer Games
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Cabrera, Miguel L. – Journal of Natural Resources and Life Sciences Education, 1994
Descriptors: Agricultural Education, Agricultural Production, Biological Sciences, Computer Assisted Instruction
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Michaels, T. E. – Journal of Natural Resources and Life Sciences Education, 1993
Studies the perceived effectiveness of four student projects involving videotape production, computer conferencing, microcomputer simulation, and rapid-cycling Brassica breeding for undergraduate plant breeding students in two course offerings in consecutive years. Linking of the computer conferencing and video projects improved the rating of the…
Descriptors: Agricultural Education, Biological Sciences, Computer Assisted Instruction, Computer Simulation
Moellenberg, Wayne P. – 1986
Computer simulations of agricultural finance and management may be helpful to students preparing for agricultural careers. Simulations would provide problem definition and problem solving in realistic interactions with complex and ambiguous situations similar to those encountered in farming. The paper describes a major financial problem for…
Descriptors: Agricultural Education, Agriculture, Business Education, Computer Assisted Instruction
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1995
This Technology Learning Activity (TLA) for agriculture education in grades 6-10 is designed to help students learn the basic terminology of a farm system while they experience the responsibility of keeping a profitable farm in operation through use of the interactive SimFarm software. Introductory materials provide an overview of technology…
Descriptors: Agricultural Education, Behavioral Objectives, Computer Assisted Instruction, Computer Simulation
Brown, Herman D.; And Others – 1985
This document consists of three parts. The first part is a report on a project conducted to develop computer software needed by vocational agriculture teachers in Texas. The report details the process used to assess and develop software, and provides guidelines that can be used by others in evaluating computer software for vocational agriculture…
Descriptors: Agricultural Education, Beginning Teachers, Computer Assisted Instruction, Computer Literacy