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Hellerstein, Earl E.; And Others – 1968
The report describes work accomplished in the development of instructional materials for second-year medical students taking a histopathology laboratory course. The objectives and methods are described and several examples of techniques are illustrated with short segments of dialogue. These segments also illustrate the branching characteristics of…
Descriptors: Computer Assisted Instruction, Learning, Medicine, Multimedia Instruction
Robinson, J. N. – Programmed Learning and Educational Technology, 1977
This paper describes a computer based simulation game designed to help students to link theory and practice in economics. Students assume the role of a government and engage in budgetary planning. (Author/STS)
Descriptors: Computer Assisted Instruction, Economics Education, Educational Games, Simulation
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Trollip, Stanley; Ortony, Andrew – Instructional Science, 1977
Program of teaching students to fly a specific maneuver through real time simulation. Computational and educational implications are considered. (DAG)
Descriptors: Computer Assisted Instruction, Educational Problems, Flight Training, Simulation
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Kauffman, James M.; And Others – Remedial and Special Education (RASE), 1985
Microcomputer simulation of pupils offers one means of addressing some of the practical problems of teacher training. A simulation is described and general findings to date are summarized. Anticipated developments and potential benefits are discussed. (Author/CL)
Descriptors: Computer Assisted Instruction, Disabilities, Microcomputers, Simulation
Pfaltzgraff, David J. – Amer J Phys, 1969
Describes the use of the analog computer in the solution of the bouncing ball problem. The problem is treated theoretically and the results of the computations may be observed graphically or on an oscilloscope. Also discussed are the distortions of the ball due to impact, and possibilities of expanding the problem to include more complex…
Descriptors: Computer Assisted Instruction, Demonstrations (Educational), Instruction, Physics
Spirer, Herbert F. – Journal of Business Education, 1972
Descriptors: Business Education, Computer Assisted Instruction, Sampling, Simulation
Williamson, John – J Educ Data Process, 1970
Descriptors: Computer Assisted Instruction, Computer Programs, Computers, Economics
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Hoagland, Roger L.; Skavaril, Russell V. – Journal of Heredity, 1972
The use of a computer program to provide a simulated genetics laboratory for students in an introductory course in genetics is described. (Author)
Descriptors: Computer Assisted Instruction, Genetics, Heredity, Higher Education
Saito, Ron – Educational Technology, 2002
Examines instructional computer simulation from a Heideggerian point of view, claiming that traditional conceptions of simulation do not account for important characteristics of existence, namely anxiety and waiting. Discusses Heidegger's conception of Bestand, or standing reserve, and suggests implications for instruction. (Author/LRW)
Descriptors: Anxiety, Computer Assisted Instruction, Computer Simulation, Instructional Design
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Laakso, Mikko-Jussi; Myller, Niko; Korhonen, Ari – Educational Technology & Society, 2009
In this paper, two emerging learning and teaching methods have been studied: collaboration in concert with algorithm visualization. When visualizations have been employed in collaborative learning, collaboration introduces new challenges for the visualization tools. In addition, new theories are needed to guide the development and research of the…
Descriptors: Visualization, Teaching Methods, Classification, Comparative Analysis
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Williams, M. Scott – Journal of Industrial Teacher Education, 2008
Virtual reality (VR) has been demonstrated to offer learning benefits over traditional instructional methods in many technical and occupational areas. However, in the framework of Rogers' innovation diffusion theory, adoption of VR in Career and Technical Education and occupational programs appears to be lagging. This study used experimental…
Descriptors: Self Efficacy, Computer Simulation, Methods, Teaching Methods
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Grover, Anita; Lam, Tai Ning; Hunt, C. Anthony – Journal of Science Education and Technology, 2008
We present a simulation tool to aid the study of basic pharmacology principles. By taking advantage of the properties of agent-based modeling, the tool facilitates taking a mechanistic approach to learning basic concepts, in contrast to the traditional empirical methods. Pharmacodynamics is a particular aspect of pharmacology that can benefit from…
Descriptors: Creativity, Student Attitudes, Pharmacology, Mathematical Formulas
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Deutschmann, Mats; Panichi, Luisa; Molka-Danielsen, Judith – ReCALL, 2009
The following paper presents two stages of an action research project involving two oral proficiency courses held in the virtual world Second Life. Course 1 was conducted during the Autumn of 2007. Based on the experiences of this course, we redesigned many aspects of it in order to improve student activity in terms of oral participation and gave…
Descriptors: Action Research, Student Participation, Comparative Analysis, Language Proficiency
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She, Hsiao-Ching; Chen, Yi-Zen – Computers & Education, 2009
This study examined how middle school students constructed their understanding of the mitosis and meiosis processes at a molecular level through multimedia learning materials presented in different interaction and sensory modality modes. A two (interaction modes: animation/simulation) by two (sensory modality modes: narration/on-screen text)…
Descriptors: Animation, Eye Movements, Attention, Interaction
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Chase, Catherine C.; Chin, Doris B.; Oppezzo, Marily A.; Schwartz, Daniel L. – Journal of Science Education and Technology, 2009
Betty's Brain is a computer-based learning environment that capitalizes on the social aspects of learning. In Betty's Brain, students instruct a character called a Teachable Agent (TA) which can reason based on how it is taught. Two studies demonstrate the "protege effect": students make greater effort to learn for their TAs than they do…
Descriptors: Learning Activities, Student Motivation, Grade 8, Grade 5
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