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Becnel, Kim, Ed. – IGI Global, 2019
The emergent phenomena of virtual reality, augmented reality, and mixed reality is having an impact on ways people communicate with technology and with each other. Schools and higher education institutions are embracing these emerging technologies and implementing them at a rapid pace. The challenge, however, is to identify well-defined problems…
Descriptors: Educational Technology, Technology Uses in Education, Computer Simulation, Simulated Environment
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Price, Leigh – Environmental Education Research, 2004
My experience of teaching the Rhodes University/Speciss College Environmental Education Course in Zimbabwe alerted me to a tension between the industry course participants who largely (although not entirely) wanted a skills/vocational training orientation and the course curriculum developers, who wanted a critical/theoretical/praxis-based…
Descriptors: Teaching Methods, Foreign Countries, Industry, Education Courses
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Campbell, Noel D.; Heriot, Kirk C.; Finney, R. Zachary – Journal of Management Education, 2006
The literature urges business schools to change their undergraduate curricula in response to changes in the models and methods currently used by corporate America. Critics contend that business schools should place more emphasis on teamwork and integrative models. Business schools are urged to "break down the silos" between functional subjects by…
Descriptors: Educational Change, Business Administration Education, Integrated Curriculum, Teamwork
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Foukaridis, G. N.; McFarlane, L. R. – Journal of Chemical Education, 1988
Notes that criticism of the training offered by universities to future chemists is well documented. Suggests a 17-step model for the planning of a chemistry course that utilizes a competency-based training program. Explains each step and lists sample objectives. (MVL)
Descriptors: Accountability, Chemical Industry, Chemistry, College Science
Bathurst, Effie G. – Office of Education, Federal Security Agency, 1950
This bulletin deals with everyday problems of boys and girls. It shows how groups of children and their teachers have tackled such problems and made some progress in solving them. It shows that the curricular activities in which children engage in solving real-life problems are often different in different regions, communities, and neighborhoods…
Descriptors: Social Status, Natural Resources, Rural Areas, Superintendents
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Miranda, R. – Chemical Engineering Education, 1989
Described is a heterogeneous catalysis course which has elements of materials processing embedded in the classical format of catalytic mechanisms and surface chemistry. A course outline and list of examples of recent review papers written by students are provided. (MVL)
Descriptors: Chemical Analysis, Chemical Engineering, Chemical Industry, Chemical Reactions
Alberta Dept. of Education, Edmonton. Curriculum Standards Branch. – 1997
With this Career and Technologies Studies (CTS) curriculum guide, secondary students in Alberta can do the following: develop skills that can be applied in their daily lives; refine career-planning skills; develop technology-related skills in electro-technologies; enhance employability skills, especially in electro-technologies industries; and…
Descriptors: Career Development, Competence, Competency Based Education, Course Content
Florida State Univ., Tallahassee. Center for Instructional Development and Services. – 1990
This packet contains a program guide and Career Merit Achievement Plan (Career MAP) for the implementation of an apparel production program in Florida secondary and postsecondary schools. The program guide describes the program content and structure, provides a program description, lists job titles under the program, and includes a curriculum…
Descriptors: Articulation (Education), Behavioral Objectives, Career Development, Classroom Techniques
Alberta Dept. of Education, Edmonton. Curriculum Standards Branch. – 1997
With this Career and Technology Studies (CTS) curriculum guide, secondary students in Alberta can do the following; develop skills that can be applied in their daily lives; refine career-planning skills; develop technology-related skills in construction; enhance employability skills, especially in construction industries; and apply and reinforce…
Descriptors: Building Trades, Career Development, Competence, Competency Based Education