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  • Technology-Enabled Blended Learning Experiences for Chemistry Education and Outreach
    Technology-Enabled Blended Learning Experiences for Chemistry Education and Outreach

    Technology-Enabled Blended Learning Experiences for Chemistry Education and Outreach discusses new technologies and their potential for the advancement of chemistry education, particularly in topics that are difficult to demonstrate in traditional 2d media.The book covers the theoretical background of technologies currently in use (such as virtual and augmented reality), introducing readers to the current landscape and providing a solid foundation on how technology can be usefully integrated in both learning and teaching chemistry content.Other sections cover the implementation of technology, how to design a curriculum, and how new tactics can be applied to both outreach and evaluation efforts. Case studies supplement the information presented, providing the reader with practicable examples and applications of covered theories and technologies.Drawing on the broad experiences and unique insights of a global team of authors from a whole host of different backgrounds, the book aims to stimulate readers’ creativity and inspire them to find their own novel applications of the techniques highlighted in this volume.

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  • Learning Identities in a Digital Age : Rethinking creativity, education and technology
    Learning Identities in a Digital Age : Rethinking creativity, education and technology

    Digital media are increasingly interwoven into how we understand society and ourselves today.From lines of code to evolving forms of online conduct, they have become an ever-present layer of our age.The rethinking of education has now become the subject of intense global policy debates and academic research, paralleled by the invention and promotion of new learning identities, which are intended to incite teachers and students to think, feel, and act as social operators in schools and beyond.Learning Identities in a Digital Age provides a critical exploration of how education has been reimagined for the digital future.It argues that education is now the subject of a "cybernetic" mode of thought: a contemporary style of thinking about society and identity that is saturated with metaphors of networks, flexibility, interactivity, and connectedness.This book examines how shifts in thought have translated into fresh ideas about creative learning, interactive tools, curriculum reform, and teacher identity.The text identifies how learning identities have been promoted, and position young people as networked learners, equipped for political, economic and cultural participation in the digital age. Included in the text:- mapping the digital age- reconstructing the future of education-making up digital learning identities-assembling creative learning-thinking with digital tools- protoyping the curriculum of the future-being a teacher in a digital age. This book situates education and technology in an intergenerational and interdisciplinary conversation.It will be of interest to students, researchers and practising education professionals who want to understand the wider sociological and psychological significance of new technologies on education and learner identity.

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  • Technology and Entrepreneurship Education : Adopting Creative Digital Approaches to Learning and Teaching
    Technology and Entrepreneurship Education : Adopting Creative Digital Approaches to Learning and Teaching

    This contemporary book offers valuable insights on digital technology and entrepreneurship education, highlighting the importance of adopting creative digital approaches to learning and teaching. It raises the questions as to whether the current approaches utilised to convey entrepreneurial knowledge are adequate enough when preparing graduates for prospective careers. The book directly addresses the need for effective practices in teaching and reinforces the rising interest and resilience in entrepreneurship.Comprising a number of distinct chapters that illuminate digitally assisted teaching methods that are used in practice to champion student engagement when learning enterprise and entrepreneurship.The contemporary practices allude to the notion that the adoption of simulations and game-based learning increases student’ comprehension, helps in retention of knowledge, and is an excellent way to introduce new content. With the substantial challenges caused by the global pandemic this book is a vital resource at a time when blended learning is the new norm and mode of instruction in Higher Education. It is ideal for researchers, instructors and students with a keen interest in game-based approaches, as it encourages application and outlook towards entrepreneurship education.

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  • Is Technology Good for Education?
    Is Technology Good for Education?

    Digital technologies are a key feature of contemporary education.Schools, colleges and universities operate along high-tech lines, while alternate forms of online education have emerged to challenge the dominance of traditional institutions.According to many experts, the rapid digitization of education over the past ten years has undoubtedly been a ‘good thing’. Is Technology Good For Education? offers a critical counterpoint to this received wisdom, challenging some of the central ways in which digital technology is presumed to be positively affecting education.Instead Neil Selwyn considers what is being lost as digital technologies become ever more integral to education provision and engagement.Crucially, he questions the values, agendas and interests that stand to gain most from the rise of digital education. This concise, up-to-the-minute analysis concludes by considering alternate approaches that might be capable of rescuing and perhaps revitalizing the ideals of public education, while not denying the possibilities of digital technology altogether.

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  • Will the development of technology ever stop?

    It is unlikely that the development of technology will ever stop. As long as there are new problems to solve and new opportunities to explore, there will be a need for technological innovation. Additionally, the pace of technological advancement has been accelerating in recent years, with new breakthroughs and discoveries constantly pushing the boundaries of what is possible. While the specific direction and focus of technological development may change over time, it is likely that the overall trend of progress will continue.

  • Why is the development of technology not progressing faster?

    The development of technology is not progressing faster due to a variety of factors. One reason is the complexity of the problems that technology aims to solve, which often require extensive research and testing. Additionally, there are limitations in funding and resources for technological development, which can slow down progress. Furthermore, ethical and regulatory considerations can also hinder the rapid advancement of technology, as new innovations must be carefully evaluated for their potential impact on society.

  • How is technology explained in school?

    In school, technology is often explained as the application of scientific knowledge for practical purposes. Students are taught about the various types of technology, including digital, mechanical, and medical, and how they impact society and the environment. They also learn about the development and evolution of technology over time, as well as the ethical and social implications of its use. Additionally, students are often taught how to use specific technologies, such as computers and software, to enhance their learning and productivity.

  • What is a specialist in application development for information technology?

    A specialist in application development for information technology is a professional who specializes in designing, creating, and maintaining software applications that meet the specific needs of an organization. They have expertise in programming languages, software development methodologies, and database management. These specialists work closely with clients and stakeholders to understand their requirements and develop customized solutions to improve efficiency, productivity, and overall business operations. They are responsible for ensuring that the applications are user-friendly, secure, and scalable to meet the evolving needs of the organization.

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  • Climate Change, Education, and Technology
    Climate Change, Education, and Technology

    The climate change crisis is the greatest challenge humanity has ever confronted.As human activities are the most significant cause for this crisis, the solution must come from within humanity.While global movements—NGOs, universities, municipal governments, etc.—are doing their part to combat the crisis, the role of education and technology cannot be emphasized enough.Education is necessary to enhance awareness, especially among the youth, generate solutions, and implement them.Technology contributes to this process by creating climate change-fighting solutions, accumulating and analysing data, and providing energy efficiency.Technology also enables the monitoring of the climate, the mitigation of its effects, and the enhancement of the environment.Therefore, climate change, education, and the use of technology should be addressed as a unit.In this volume, the authors integrate climate change, education, and technological applications. This book is comprehensive and offers readers a variety of perspectives, encouraging the generation of novel and inventive ideas.The collaboration of authors from various disciplines to address the issue brings about novel and intriguing perspectives.

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  • Individualized Learning with Technology : Meeting the Needs of High School Students
    Individualized Learning with Technology : Meeting the Needs of High School Students

    Today we are moving into an Information Revolution that is every bit as life altering as the previous Industrial Revolution.Students must now stay in school longer, and achieve at a much higher rate than in the past.But high school students can benefit from adult learning and instructional design principles used to successfully create training programs in the workplace.The reason that workplace training is successful is that learners are looked at individually (or in groups with similar characteristics), and then training is designed just for them.Training programs are also specifically designed to meet the new technology needs of the 21st century. This book can be a starting point for secondary education majors, high school teachers, and administrators to begin to consider how individualizing instruction could be done for high school students.With computerized applications implemented alongside a standardized curriculum, it can be possible for individual student needs to be met while also ensuring that group needs are also met.A powerful motivational factor can also be introduced that will make students want to learn, and to be life-long learners.The time is now.

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  • Technology Roadmapping and Development : A Quantitative Approach to the Management of Technology
    Technology Roadmapping and Development : A Quantitative Approach to the Management of Technology

    This textbook explains Technology Roadmapping, in both its development and practice, and illustrates the underlying theory of, and empirical evidence for, technologic evolution over time afforded by this strategy.The book contains a rich set of examples and practical exercises from a wide array of domains in applied science and engineering such as transportation, energy, communications, and medicine.Professor de Weck gives a complete review of the principles, methods, and tools of technology management for organizations and technologically-enabled systems, including technology scouting, roadmapping, strategic planning, R&D project execution, intellectual property management, knowledge management, partnering and acquisition, technology transfer, innovation management, and financial technology valuation.Special topics also covered include Moore’s law, S-curves, the singularity and fundamental limits to technology.Ideal for university courses in engineering, management, and business programs, as well as self-study or online learning for professionals in a range of industries, readers of this book will learn how to develop and deploy comprehensive technology roadmaps and R&D portfolios on diverse topics of their choice. Introduces a unique framework, Advanced Technology Roadmap Architecture (ATRA), for developing quantitative technology roadmaps and competitive R&D portfolios through a lucid and rigorous step-by-step approach;Elucidates the ATRA framework through analysis which was validated on an actual $1 billion R&D portfolio at Airbus, leveraging a pedagogy significantly beyond typical university textbooks and problem sets;Reinforces concepts with in-depth case studies, practical exercises, examples, and thought experiments interwoven throughout the text;Maximizes reader competence on how to explicitly link strategy, finance, and technology. The book follows and supports the MIT Professional Education Courses “Management of Technology: Roadmapping & Development,” https://professional.mit.edu/course-catalog/management-technology-roadmapping-development and “Management of Technology: Strategy & Portfolio Analysis” https://professional.mit.edu/course-catalog/management-technology-strategy-portfolio-analysis

    Price: 59.99 £ | Shipping*: 0.00 £
  • Technology Roadmapping and Development : A Quantitative Approach to the Management of Technology
    Technology Roadmapping and Development : A Quantitative Approach to the Management of Technology

    This textbook explains Technology Roadmapping, in both its development and practice, and illustrates the underlying theory of, and empirical evidence for, technologic evolution over time afforded by this strategy.The book contains a rich set of examples and practical exercises from a wide array of domains in applied science and engineering such as transportation, energy, communications, and medicine.Professor de Weck gives a complete review of the principles, methods, and tools of technology management for organizations and technologically-enabled systems, including technology scouting, roadmapping, strategic planning, R&D project execution, intellectual property management, knowledge management, partnering and acquisition, technology transfer, innovation management, and financial technology valuation.Special topics also covered include Moore’s law, S-curves, the singularity and fundamental limits to technology.Ideal for university courses in engineering, management, and business programs, as well as self-study or online learning for professionals in a range of industries, readers of this book will learn how to develop and deploy comprehensive technology roadmaps and R&D portfolios on diverse topics of their choice. Introduces a unique framework, Advanced Technology Roadmap Architecture (ATRA), for developing quantitative technology roadmaps and competitive R&D portfolios through a lucid and rigorous step-by-step approach;Elucidates the ATRA framework through analysis which was validated on an actual $1 billion R&D portfolio at Airbus, leveraging a pedagogy significantly beyond typical university textbooks and problem sets;Reinforces concepts with in-depth case studies, practical exercises, examples, and thought experiments interwoven throughout the text;Maximizes reader competence on how to explicitly link strategy, finance, and technology. The book follows and supports the MIT Professional Education Courses “Management of Technology: Roadmapping & Development,” https://professional.mit.edu/course-catalog/management-technology-roadmapping-development and “Management of Technology: Strategy & Portfolio Analysis” https://professional.mit.edu/course-catalog/management-technology-strategy-portfolio-analysis

    Price: 44.99 £ | Shipping*: 0.00 £
  • What is a specialist in information technology in application development?

    A specialist in information technology in application development is a professional who focuses on creating and maintaining software applications. They have expertise in programming languages, software development methodologies, and application design. Their role involves analyzing user needs, designing application solutions, writing code, testing and debugging applications, and ensuring that they meet the required specifications and standards. These specialists often work closely with other IT professionals and stakeholders to deliver high-quality, user-friendly applications.

  • What is the school education for becoming a state-certified information technology assistant?

    To become a state-certified information technology assistant, one typically needs to complete a vocational training program or an apprenticeship in information technology. These programs usually last for 2-3 years and cover a range of topics including computer hardware and software, networking, programming, and IT support. Additionally, students may also need to pass a state certification exam to become officially certified as an IT assistant. Some programs may also require students to complete an internship or gain practical work experience in the field.

  • Should I learn wood technology or carpentry technology?

    The decision between learning wood technology or carpentry technology depends on your interests and career goals. Wood technology focuses on the science and engineering of wood materials, including processing, preservation, and utilization. This field is more research and industry-oriented, with opportunities in manufacturing, product development, and quality control. On the other hand, carpentry technology is more hands-on and practical, focusing on the skills and techniques needed for construction and woodworking projects. If you are more interested in the technical and scientific aspects of wood, then wood technology may be the better choice. However, if you enjoy working with your hands and want to pursue a career in construction or woodworking, then carpentry technology may be the better fit for you.

  • Is induction technology more durable than ceramic glass technology?

    Induction technology is generally considered more durable than ceramic glass technology. This is because induction cooktops are made with a tough glass-ceramic material that can withstand high temperatures and is less prone to scratches and cracks. Additionally, induction cooktops have fewer parts that can wear out over time compared to ceramic glass cooktops, making them more reliable in the long run. Overall, induction technology is known for its durability and longevity compared to ceramic glass technology.

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