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Baranov, Pavel P.; Mamychev, Aleksey Yu.; Plotnikov, Andrey A.; Voronov, Dmitry Yu.; Voronova, Elena M. – Journal of Educational Psychology - Propositos y Representaciones, 2020
The article analyzes the main problems and contradictions in the formation of legal regimes for the regulation of robotics, artificial intelligence and other innovative technologies of our time. The work content shows the unpreparedness of modern legal science and practice to conceptual and legal design, legal and technical development of the…
Descriptors: Robotics, Artificial Intelligence, Legal Problems, Technological Advancement
Zhihan Lv Ed. – IGI Global, 2024
The rapid adoption of deep learning models has resulted in many business services becoming model services, yet most AI systems lack the necessary automation and industrialization capabilities. This leads to heavy reliance on manual operation and maintenance, which not only consumes power but also causes resource wastage and stability issues during…
Descriptors: Artificial Intelligence, Robotics, Computer Software, Problem Solving
OECD Publishing, 2025
As the capabilities of artificial intelligence (AI) and robotics continue to evolve, and the ways in which humans carry out tasks change as a result, education systems must begin to reassess the competencies required for life and work in the new context. These changes could be significant and fast. Therefore, policymakers must look beyond…
Descriptors: Artificial Intelligence, Technology Uses in Education, Robotics, Educational Benefits
Haseski, Halil Ibrahim – International Journal of Computer Science Education in Schools, 2019
The aim of the present study was to determine the views of pre-service teachers on artificial intelligence. In the present qualitative study, conducted with the phenomenology design, that data were collected from 94 pre-service teachers attending different departments at Manisa Celal Bayar University, Faculty of Education during the 2018- 2019…
Descriptors: Foreign Countries, Preservice Teachers, Student Attitudes, Artificial Intelligence
Akgunduz, Devrim; Topalsan, Aysegul Kinik; Turk, Zeynep – Journal of Turkish Science Education, 2022
This study aimed to determine the perceptions of academics from different faculties and experts from non-governmental organizations, and Research & Development (R&D) centers of the concepts of STEM, innovation, entrepreneurship, industry 4.0, robotics, coding, maker, artificial intelligence, and their reflections on the daily life. In…
Descriptors: College Faculty, Teacher Attitudes, STEM Education, Entrepreneurship
Aberšek, Boris; Flogie, Andrej; Aberšek, Metka Kordigel – International Baltic Symposium on Science and Technology Education, 2023
With the approach of constant changes and quality assurance in education, we have reached an optimum that no longer justifies all further investments in such changes, as the results of these investments are (and will be) minimal and insufficient. We have reached a stage where we must shift from evolution to revolution, from constant changes in…
Descriptors: Educational Change, Educational Quality, Quality Assurance, Social Change
Woods, Róisín; Doherty, Oran; Stephens, Simon – Industry and Higher Education, 2022
In this paper the authors explore the implications for higher education of the disruptions caused by changes in the retail sector resulting from rapid developments in technology. Industry 4.0 technologies such as big data, the Internet of Things, blockchain, automation, robotics, artificial intelligence and virtual reality are increasingly evident…
Descriptors: Retailing, Foreign Countries, Technological Advancement, Administrator Attitudes
Selwyn, Neil – John Wiley & Sons, Inc, 2019
Developments in AI, robotics and big data are changing the nature of education. Yet the implications of these technologies for the teaching profession are uncertain. While most educators remain convinced of the need for human teachers, outside the profession there is growing anticipation of a technological reinvention of the ways in which teaching…
Descriptors: Educational Technology, Technology Uses in Education, Robotics, Artificial Intelligence
Herzenberg, Stephen; Alic, John – Keystone Research Center, 2019
This is the first report of a Keystone Research Center project on the "Future of Work." The aim is to identify public policies that could help ensure that the application and diffusion of artificial intelligence (AI) over the next several decades fosters an economy in which Americans generally thrive. The project is motivated, in part,…
Descriptors: Artificial Intelligence, Public Policy, Economics, Technological Advancement
Chiu, Wang-Kin – Education Sciences, 2021
The technological advancement and rapid development of artificial intelligence have led to a growing number of studies investigating pedagogical innovations incorporated with emerging technologies in this digital era. An increasing amount of empirical evidence has suggested the potential benefits of incorporating digital technologies and…
Descriptors: Technological Advancement, Artificial Intelligence, Educational Innovation, Educational Technology
Saltinski, Ronald – Journal of Instructional Pedagogies, 2015
Today's students, K-12 and beyond, will face an ominous future unless educators quickly invest in preparing student perspectives for the accelerating technologies that will have global implications for the wellbeing of all humanity. Accelerating technologies are quietly, almost insidiously, transforming the world with little fanfare and certainly…
Descriptors: Well Being, Technological Advancement, Influence of Technology, Science and Society
Letting Artificial Intelligence in Education out of the Box: Educational Cobots and Smart Classrooms
Timms, Michael J. – International Journal of Artificial Intelligence in Education, 2016
This paper proposes that the field of AIED is now mature enough to break away from being delivered mainly through computers and pads so that it can engage with students in new ways and help teachers to teach more effectively. Mostly, the intelligent systems that AIED has delivered so far have used computers and other devices that were essentially…
Descriptors: Artificial Intelligence, Educational Technology, Robotics, Intelligent Tutoring Systems
Adams Becker, S.; Freeman, A.; Giesinger Hall, C.; Cummins, M.; Yuhnke, B. – New Media Consortium, 2016
What is on the five-year horizon for K-12 schools worldwide? Which trends and technologies will drive educational change? What are the challenges that we consider as solvable or difficult to overcome, and how can we strategize effective solutions? These questions and similar inquiries regarding technology adoption and transforming teaching and…
Descriptors: Annual Reports, Elementary Secondary Education, Educational Trends, Educational Change
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
Antczak, Janice – School Library Journal, 1990
Describes 10 science fiction stories for young readers whose contents address recent developments on the frontiers of scientific research, including genetic engineering, artificial intelligence, and robotics. The use of these materials to inform young readers about the issues and dangers involved in scientific developments is discussed. (CLB)
Descriptors: Adolescent Literature, Artificial Intelligence, Genetic Engineering, Robotics