COGNITIVE TECHNOLOGIES IN EDUCATION
Author | : Dr. M. Sanmuga Revathi |
Publisher | : Krishna Publication House |
Total Pages | : |
Release | : 2021-12-20 |
Genre | : Antiques & Collectibles |
ISBN | : 8194920531 |
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Author | : Dr. M. Sanmuga Revathi |
Publisher | : Krishna Publication House |
Total Pages | : |
Release | : 2021-12-20 |
Genre | : Antiques & Collectibles |
ISBN | : 8194920531 |
Author | : Zheng, Robert Z. |
Publisher | : IGI Global |
Total Pages | : 337 |
Release | : 2020-05-22 |
Genre | : Education |
ISBN | : 179983252X |
Immersive technology as an umbrella concept consists of multiple emerging technologies including augmented reality (AR), virtual reality (VR), gaming, simulation, and 3D printing. Research has shown immersive technology provides unique learning opportunities for experiential learning, multiple perspectives, and knowledge transfer. Due to its role in influencing learners’ cognitive and affective processes, it is shown to have great potential in changing the educational landscape in the decades to come. However, there is a lack of general cognitive and affective theoretical framework to guide the diverse aspects of immersive technology research. In fact, lacking the cognitive and affective theoretical framework has begun to hamper the design and application of immersive technology in schools and related professional training. Cognitive and Affective Perspectives on Immersive Technology in Education is an essential research book that explores methods and implications for the design and implementation of upcoming immersive technologies in pedagogical and professional development settings. The book includes case studies that highlight the cognitive and affective processes in immersive technology as well as the successful applications of immersive technology in education. Featuring a wide range of topics such as curriculum design, K-12 education, and mobile learning, this book is ideal for academicians, educators, policymakers, curriculum developers, instructional designers, administrators, researchers, and students.
Author | : Kennedy Andrew Thomas |
Publisher | : Springer Nature |
Total Pages | : 542 |
Release | : 2021-09-01 |
Genre | : Psychology |
ISBN | : 303072400X |
Neuroscience research deals with the physiology, biochemistry, anatomy and molecular biology of neurons and neural circuits and especially their association with behavior and learning. Of late, neuroscience research is playing a pivotal role in industry, science writing, government program management, science advocacy, and education. In the process of learning as experiencing knowledge, the human brain plays a vital role as the central governing system to map the images of learning in the human brain which may be called educational neuroscience. It provides means to develop a common language and bridge the gulf between educators, psychologists and neuroscientists. The emerging field of educational neuroscience presents opportunities as well as challenges for education, especially when it comes to assess the learning disorders and learning intentions of the students. The most effective learning involves recruiting multiple regions of the brain for the learning task. These regions are associated with such functions as memory, the various senses, volitional control, and higher levels of cognitive functioning. By considering biological factors, research has advanced the understanding of specific learning difficulties, such as dyslexia and dyscalculia. Likewise, neuroscience is uncovering why certain types of learning are more rewarding than others. Of late, a lot of research has gone in the field of neural networks and deep learning. It is worthwhile to consider these research areas in investigating the interplay between the human brain and human formal/natural learning. This book is intended to bring together the recent advances in neuroscience research and their influence on the evolving learning systems with special emphasis on the evolution of a learner-centric framework in outcome based education by taking into cognizance the learning abilities and intentions of the learners.
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 386 |
Release | : 2000-08-11 |
Genre | : Education |
ISBN | : 0309131979 |
First released in the Spring of 1999, How People Learn has been expanded to show how the theories and insights from the original book can translate into actions and practice, now making a real connection between classroom activities and learning behavior. This edition includes far-reaching suggestions for research that could increase the impact that classroom teaching has on actual learning. Like the original edition, this book offers exciting new research about the mind and the brain that provides answers to a number of compelling questions. When do infants begin to learn? How do experts learn and how is this different from non-experts? What can teachers and schools do-with curricula, classroom settings, and teaching methodsâ€"to help children learn most effectively? New evidence from many branches of science has significantly added to our understanding of what it means to know, from the neural processes that occur during learning to the influence of culture on what people see and absorb. How People Learn examines these findings and their implications for what we teach, how we teach it, and how we assess what our children learn. The book uses exemplary teaching to illustrate how approaches based on what we now know result in in-depth learning. This new knowledge calls into question concepts and practices firmly entrenched in our current education system. Topics include: How learning actually changes the physical structure of the brain. How existing knowledge affects what people notice and how they learn. What the thought processes of experts tell us about how to teach. The amazing learning potential of infants. The relationship of classroom learning and everyday settings of community and workplace. Learning needs and opportunities for teachers. A realistic look at the role of technology in education.
Author | : Don Passey |
Publisher | : Routledge |
Total Pages | : 262 |
Release | : 2013-10-30 |
Genre | : Education |
ISBN | : 1135104743 |
Inclusive Technology Enhanced Learning draws together a remarkable breadth of research findings from across the field, providing useful data on the power of technology to solve cognitive, physical, emotional or geographic challenges in education. A far-ranging assessment, this book combines research, policy, and practical evidence to show what digital technologies work best for which learners and why. Inclusive Technology Enhanced Learning takes a number of unique perspectives, looking at uses of digital technologies through a detailed learning framework; considering different groups of users and how they can be individually supported through digital technologies; and exploring how those who support different categories of learners can apply technologies to their specific support needs. This powerful meta-analysis of research on technology enhanced learning will be invaluable reading for anyone concerned with the impacts of digital technologies on learning across subject areas, age ranges, and levels of ability.
Author | : Fran C. Blumberg |
Publisher | : Academic Press |
Total Pages | : 372 |
Release | : 2017-07-05 |
Genre | : Psychology |
ISBN | : 0128097094 |
Cognitive Development in Digital Contexts investigates the impact of screen media on key aspects of children and adolescents' cognitive development. Highlighting how screen media impact cognitive development, the book addresses a topic often neglected amid societal concerns about pathological media use and vulnerability to media effects, such as aggression, cyber-bullying and Internet addiction. It addresses children and adolescents' cognitive development involving their interactions with parents, early language development, imaginary play, attention, memory, and executive control, literacy and academic performance. - Covers the impact of digital from both theoretical and practical perspectives - Investigates effects of digital media on attention, memory, language and executive functioning - Examines video games, texting, and virtual reality as contexts for learning - Explores parent-child interactions around media - Considers the development of effective educational media - Addresses media literacy and critical thinking about media - Considers social policy for increasing access to high quality education media and the Internet - Provides guidance for parents on navigating children's technology usage
Author | : Tzanavari, Aimilia |
Publisher | : IGI Global |
Total Pages | : 380 |
Release | : 2010-01-31 |
Genre | : Computers |
ISBN | : 1605669415 |
"This book focuses on the study and application of human computer interaction principles in the design of online education"--Provided by publisher.
Author | : Piet A.M. Kommers |
Publisher | : Springer Science & Business Media |
Total Pages | : 280 |
Release | : 2012-12-06 |
Genre | : Computers |
ISBN | : 3642772226 |
Hypermedia technology needs a creative approach from the outset in the design of software to facilitate human thinking and learning. This book opens a discussion of the potential of hypermedia and related approaches to provide open exploratory learning environments. The papers in the book are based on contributions to a NATO Advanced Research Workshop held in July1990 and are grouped into six sections: - Semantic networking as cognitive tools, - Expert systems as cognitive tools, - Hypertext as cognitive tools, - Collaborative communication tools, - Microworlds: context-dependent cognitive tools, - Implementing cognitive tools. The book will be valuable for those who design, implement and evaluate learning programs and who seek to escape from rigid tactics like programmed instruction and behavioristic approaches. The book presents principles for exploratory systems that go beyond existing metaphors of instruction and provokes the reader to think in a new way about the cognitive level of human-computer interaction.
Author | : Frederick Reif |
Publisher | : MIT Press |
Total Pages | : 491 |
Release | : 2008 |
Genre | : Education |
ISBN | : 0262515148 |
An accessible introduction to some of the cognitive issues important for thinking and learning in scientific or other complex domains (such as mathematics, physics, chemistry, engineering, or expository writing), with practical educational applications and implementation methods. Many students find it difficult to learn the kind of knowledge and thinking required by college or high school courses in mathematics, science, or other complex domains. Thus they often emerge with significant misconceptions, fragmented knowledge, and inadequate problem-solving skills. Most instructors or textbook authors approach their teaching efforts with a good knowledge of their field of expertise but little awareness of the underlying thought processes and kinds of knowledge required for learning in scientific domains. In this book, Frederick Reif presents an accessible coherent introduction to some of the cognitive issues important for thinking and learning in scientific or other complex domains (such as mathematics, science, physics, chemistry, biology, engineering, or expository writing). Reif, whose experience teaching physics at the University of California led him to explore the relevance of cognitive science to education, examines with some care the kinds of knowledge and thought processes needed for good performance; discusses the difficulties faced by students trying to deal with unfamiliar scientific domains; describes some explicit teaching methods that can help students learn the requisite knowledge and thinking skills; and indicates how such methods can be implemented by instructors or textbook authors. Writing from a practically applied rather than predominantly theoretical perspective, Reif shows how findings from recent research in cognitive science can be applied to education. He discusses cognitive issues related to the kind of knowledge and thinking skills that are needed for science or mathematics courses in high school or colleges and that are essential prerequisites for more advanced intellectual performance. In particular, he argues that a better understanding of the underlying cognitive mechanisms should help to achieve a more scientific approach to science education.