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Showing 1 to 15 of 35 results Save | Export
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Grant, Robert – Statistics Education Research Journal, 2017
Statistical literacy, the ability to understand and make use of statistical information including methods, has particular relevance in the age of data science, when complex analyses are undertaken by teams from diverse backgrounds. Not only is it essential to communicate to the consumers of information but also within the team. Writing from the…
Descriptors: Data, Statistics, Numeracy, Artificial Intelligence
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Holowka, Peter – International Association for Development of the Information Society, 2020
COVID-19 presented a challenge to the traditional methods of teaching programming and robotics in a secondary school environment. When campuses were closed around the world in the spring of 2020, it was not possible for students to access the computer labs nor the robotics equipment that was traditionally used to facilitate the instruction of…
Descriptors: Robotics, COVID-19, Pandemics, Teaching Methods
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Welch, Vivian; Mathew, Christine; Marins, Luciana M.; Ghogomu, Elizabeth T.; Dowling, Sierra; Abdisalam, Salman; Madani, Mohamad T.; Murphy, Emma; Kebedom, Kisanet; Ogborogu, Jennifer; Gallagher-Mackay, Kelly – Campbell Systematic Reviews, 2020
The Organization for Economic Co-operation and Development (OECD) estimated that approximately 9% of current jobs within OECD member states are threatened with automation and digitalization--all significant successes and advances in artificial intelligence, robotics, and computer science. With such global changes and forecasts, in the labor…
Descriptors: Skill Development, International Organizations, Automation, Unemployment
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Dillenbourg, Pierre – International Journal of Artificial Intelligence in Education, 2016
How does AI&EdAIED today compare to 25 years ago? This paper addresses this evolution by identifying six trends. The trends are ongoing and will influence learning technologies going forward. First, the physicality of interactions and the physical space of the learner became genuine components of digital education. The frontier between the…
Descriptors: Artificial Intelligence, Educational Trends, Trend Analysis, Educational Technology
Simkins, Michael – Technology & Learning, 2008
Robots that can learn new behaviors. Robots that can reproduce themselves. Science fiction? Not anymore. Roboticists at Cornell's Computational Synthesis Lab have developed just such engineered creatures that offer interesting implications for education. The team, headed by Hod Lipson, was intrigued by the question, "How can you get robots to be…
Descriptors: Robotics, Research and Development, Technological Advancement, Scientific Research
Kurzweil, Raymond – American Scientist, 1985
Examines the past, present, and future status of Artificial Intelligence (AI). Acknowledges the limitations of AI but proposes possible areas of application and further development. Urges a concentration on the unique strengths of machine intelligence rather than a copying of human intelligence. (ML)
Descriptors: Artificial Intelligence, Computer Literacy, Computer Science, Computers
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Cumming, Geoff – Journal of Computer Assisted Learning, 1998
Gives a brief outline of the development of Artificial Intelligence in Education (AIED) which includes psychology, education, cognitive science, computer science, and artificial intelligence. Highlights include learning environments; learner modeling; a situated approach to learning; and current examples of AIED research. (LRW)
Descriptors: Artificial Intelligence, Computer Science, Educational Environment, Educational Research
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Schell, George P. – Journal of Educational Technology Systems, 1988
Reviews the development of artificial intelligence systems and the mechanisms used, including knowledge representation, programing languages, and problem processing systems. Eleven books and 6 journals are listed as sources of information on artificial intelligence. (23 references) (CLB)
Descriptors: Algorithms, Artificial Intelligence, Computer Science, Heuristics
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Kugel, Peter – Journal of Computers in Mathematics and Science Teaching, 1985
The nature of thinking is the subject of this second part in a series which is examining various topics and issues related to the controversy of whether or not computers can think. Suggests that intelligence is the ability to develop general ideas and not the ability to apply those ideas. (JN)
Descriptors: Artificial Intelligence, Computer Science, Computers, Higher Education
National Science Foundation, Washington, DC. Directorate for Mathematical and Physical Sciences. – 1984
Provided in this report are summaries of grants awarded by the National Science Foundation Division of Computer Research in fiscal year 1984. Similar areas of research are grouped (for the purposes of this report only) into these major categories: (1) computational mathematics; (2) computer systems design; (3) intelligent systems; (4) software…
Descriptors: Artificial Intelligence, Computer Oriented Programs, Computer Science, Computers
Adiga, Sadashiv – Science Software Quarterly, 1984
Discusses: (1) the architecture of expert systems; (2) features that distinguish expert systems from conventional programs; (3) conditions necessary to select a particular application for the development of successful expert systems; (4) issues to be resolved when building expert systems; and (5) limitations. Examples of selected expert systems…
Descriptors: Artificial Intelligence, Communicable Diseases, Computer Science, Computer Software
Edelson, Edward – Mosaic, 1984
Computers, chip technologies, networking, and artificial intelligence all need vast improvement just to take their place as tools for building new computers. Research efforts, progress, and needs in each of these areas are addressed. (JN)
Descriptors: Artificial Intelligence, Computer Science, Computer Software, Computers
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Kumar, Amruth N. – Journal on Educational Resources in Computing, 2004
We have been using robots in our artificial intelligence course since fall 2000. We have been using the robots for open-laboratory projects. The projects are designed to emphasize high-level knowledge-based AI algorithms. After three offerings of the course, we paused to analyze the collected data and to see if we could answer the following…
Descriptors: Artificial Intelligence, Robotics, Laboratories, College Students
La Brecque, Mort – Mosaic, 1984
To break the bottleneck inherent in today's linear computer architectures, parallel schemes (which allow computers to perform multiple tasks at one time) are being devised. Several of these schemes are described. Dataflow devices, parallel number-crunchers, programing languages, and a device based on a neurological model are among the areas…
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Science, Computers
Falkenhainer, Brian; And Others – 1986
This paper describes the Structure-Mapping Engine (SME), a cognitive simulation program for studying human analogical processing. SME is based on Gentner's Structure-Mapping theory of analogy, and provides a "tool kit" for constructing matching algorithms consistent with this theory. This flexibility enhances cognitive simulation studies by…
Descriptors: Algorithms, Artificial Intelligence, Cognitive Processes, Cognitive Structures
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