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Araújo, Isabel; Faria, Pedro Miguel – International Association for Development of the Information Society, 2020
The evolution of ICT and its adoption in higher education is driving greater interactivity in teaching and learning processes. The teaching/learning paradigm has been changing. Both educational actors, teacher and student, are increasingly adapting to use technologies. This article presents a study that enhances how technologies can be used in the…
Descriptors: Student Attitudes, Integrated Learning Systems, Higher Education, Technology Integration
Voronina, Marianna V.; Tretyakova, Zlata O. – International Journal of Environmental and Science Education, 2017
The article considers the peculiarities of training foreign students subject "Descriptive geometry and Engineering Graphics" in a modern engineering university of Russia. The relevance of the problem conditioned by the fact that virtually there are no special studies of teaching Descriptive Geometry and Engineering Graphics in Russian…
Descriptors: Russian, Language of Instruction, Geometry, Engineering Education
Chandramouli, Magesh; Chittamuru, Siva-Teja – Engineering Design Graphics Journal, 2016
This paper explains the design of a graphics-based virtual environment for instructing computer hardware concepts to students, especially those at the beginner level. Photorealistic visualizations and simulations are designed and programmed with interactive features allowing students to practice, explore, and test themselves on computer hardware…
Descriptors: Online Courses, Computer Software, Concept Formation, Guidelines

Leu, M. C.; Mahajan, R. – CoED, 1984
Development of a robot simulation program based on geometric transformation softwares available in most computer graphics systems and program features are described. The program can be extended to simulate robots coordinating with external devices (such as tools, fixtures, conveyors) using geometric transformations to describe the…
Descriptors: Computer Graphics, Computer Programs, Computer Simulation, Engineering Education

Fields, Carl – CoED, 1984
A brief package of subroutines (which can be typed in 15 minutes) enables a standard Apple II Plus, IIc, or IIe microcomputer to simulate a pen-plotter. Techniques for using this package in introductory engineering graphics courses are described. A sample program (which draws an oblique line) containing the subroutines is included. (Author/JN)
Descriptors: Computer Graphics, Computer Simulation, Computer Software, Engineering Education

Charos, Georgios N.; And Others – Chemical Engineering Education, 1986
Previous work focused on use of computer graphics in teaching thermodynamic phase equilibria for classes I and II. Extends this work to include the considerably more non-ideal phase behavior shown by classes III, IV, and V. Student and instructor response has been overwhelmingly positive about the approach. (JN)
Descriptors: Chemical Engineering, Computer Graphics, Computer Software, Engineering Education
Cole, Rodney W.; And Others – Engineering Education, 1986
Describes: (1) the equipment used to develop instructional films using computer graphics; (2) how the films are constructed; and (3) the resulting modules. The modules focus on concepts students find difficult (such as operation of a simple latch), functional relationships, and dynamic problems. (JN)
Descriptors: Animation, Computer Graphics, Engineering Education, Higher Education

Jeswiet, J.; Mulvenna, C. A. – CoED, 1985
To evaluate the use of computer graphics for illustrating kinematics in an undergraduate course, a student project of mechanism simulation and analysis was carried out using a recently acquired workstation. This project is described. (JN)
Descriptors: Computer Graphics, Computer Simulation, Engineering, Engineering Education

Norton, Robert L. – CoED, 1984
Describes a course designed to teach engineers how to accomplish computer graphics techniques on a limited scale with the Apple computer. The same mathematics and program code will also function for larger and more complex computers. Course content, instructional strategies, student evaluation, and recommendations are considered. (JN)
Descriptors: Computer Graphics, Course Content, Course Descriptions, Engineering Education
Moore, Joi L., Ed.; Benson, Angela D., Ed. – InTech, 2012
This book, written by authors representing 12 countries and five continents, is a collection of international perspectives on distance learning and distance learning implementations in higher education. The perspectives are presented in the form of practical case studies of distance learning implementations, research studies on teaching and…
Descriptors: Foreign Countries, Distance Education, Instructional Design, Educational Technology

Tennyson, Stephen A.; Krueger, Thomas J. – Engineering Design Graphics Journal, 2001
Introduces rapid prototyping which creates virtual models through a variety of automated material additive processes. Relates experiences using JP System 5 in freshman and sophomore engineering design graphics courses. Analyzes strengths and limitations of the JP System 5 and discusses how to use it effectively. (Contains 15 references.)…
Descriptors: Computer Graphics, Course Descriptions, Engineering Education, Graphic Arts
Mitchell, Eugene E., Ed. – 1980
Described is an inexpensive apparatus, consisting of a microcomputer, a magnetostrictive digitizing tablet, and a teletype terminal, that accurately and quickly measures positions, lengths, and areas. Particular emphasis is given to interfacing, software, and to some applications in education and research of this minimum configuration system.…
Descriptors: Computer Graphics, Computers, Educational Media, Engineering
McClain, Gerald R. – 1975
This Computer Graphics Laboratory houses an IBM 1130 computer, U.C.C. plotter, printer, card reader, two key punch machines, and seminar-type classroom furniture. A "General Drafting Graphics System" (GDGS) is used, based on repetitive use of basic coordinate and plot generating commands. The system is used by 12 institutions of higher education…
Descriptors: Computer Graphics, Engineering Education, Engineering Graphics, Higher Education

Naik, Chandrashekhar D.; And Others – Chemical Engineering Education, 1985
Describes an interactive graphics package which illustrates the phase behavior of binary mixtures. The package has been successfully used with graduate and undergraduate students in the chemical engineering curriculum at Cornell University. Features contributing to this success are noted. (JN)
Descriptors: Chemical Engineering, College Instruction, Computer Graphics, Computer Software

Whitman, David L.; Terry, R. E. – CoED, 1984
A computer program which allows the solution of a Monte Carlo simulation (probabilistic sensitivity analysis) has been developed for the Vic-20 microcomputer. Theory of Monte Carlo simulation, program capabilities and operation, and sample calculations are discussed. Student comments on the program are included. (JN)
Descriptors: Computer Graphics, Engineering, Engineering Education, Higher Education