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  • Music, Technology, Innovation : Industry and Educational Perspectives
    Music, Technology, Innovation : Industry and Educational Perspectives

    Music, Technology, Innovation: Industry and Educational Perspectives draws upon cutting-edge practice in the use of technology from both a pedagogical and industry perspective.Situated within the latest research, this edited volume explores technological innovation from a musical perspective, examines current trends within the industry, and carefully considers them from an educational perspective. Noted throughout history, music education is responsive to industry innovations.However, emerging technologies often begin with over-hyped promises before they move through various phases of development and are then repurposed for learning and teaching.Educators can adopt an innovation and develop a framework that is pedagogically sound and learner-centred.Based on these ideas, the authors together highlight industry innovations that have potential outcomes for engaging students in music learning within research-informed practices, build upon these ideas and identify proactive mechanisms for teaching music education, and work towards developing a framework for understanding these phenomena.The chapters address key topics including the ethics of technology, AI and music, online performance and teaching, gamification, big data, teaching audio production, acoustic ecology, and more.The examination of areas in contemporary innovation can further support the potential to empower teachers and students to understand the opportunities for teaching, sustainability, and growth in music education.

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  • Robotics and Automation in Industry 4.0 : Smart Industries and Intelligent Technologies
    Robotics and Automation in Industry 4.0 : Smart Industries and Intelligent Technologies

    The book presents the innovative aspects of smart industries and intelligent technologies involving Robotics and Automation.It discusses the challenges in the design of autonomous robots and provides an understanding of how different systems communicate with each other, allowing cooperation with other human systems and operators in real time. Robotics and Automation in Industry 4.0: Smart Industries and Intelligent Technologies offers research articles, flow charts, algorithms, and examples based on daily life in automation and robotics related to the building of Industry 4.0.It presents disruptive technology applications related to Smart Industries and talks about how robotics is an important Industry 4.0 technology that offers a wide range of capabilities and has improved automation systems by doing repetitive tasks with more accuracy and at a lower cost.The book discusses how frontline healthcare staff can evaluate, monitor, and treat patients from a safe distance by using robotic and telerobotic systems to minimize the risk of infectious disease transmission.Artificial intelligence (AI) and machine learning (ML) are looked at and the book offers a comprehensive overview of the key challenges surrounding the Internet of Things (IoT) and AI synergy, including current and future applications with significant societal value. An ideal read for scientists, research scholars, entrepreneurs, industrialists, academicians, and various other professionals who are interested in exploring innovations in the applicational areas of AI, IoT, and ML related to Robotics and Automation.

    Price: 170.00 £ | Shipping*: 0.00 £
  • Not Invented Here : Cross-industry Innovation
    Not Invented Here : Cross-industry Innovation

    Where can a hospital apply principles from the airline sector?How can a car manufacturer use tools from the video game industry?What can an event organiser learn from the railways?Cross-industry innovation is a clever way to jump-start your innovation efforts by drawing analogies and transferring approaches between contexts, beyond the borders of your own industry, sector, area or domain. Not invented here refers to the phenomenon of people blocking out ideas from the outside, it also indicates that there are beautiful alternatives everywhere just waiting to be introduced to your context.The potential of ideas and approaches from other areas is tremendous, still only very few organisations apply cross-industry innovation strategies in any kind of structured way.The book Not Invented Here provides you with cross-industry innovation strategies and tools to increase your match sensitivity’ (the ability to make more effective connections) and see the opportunities available to you.With the chapters The art of questioning, Someone else has solved your problem, Inspiring industries & smart sectors, Your business challenges and many more this book opens up interesting new perspectives and is a significant source of major innovative steps. This inspirational, illustrated business book presents strategies & tools for cross-industry innovation.It emerged from hundreds of conversations with business leaders and innovators and is packed with ideas, approaches, and cases that you can apply in your own industry.The authors, Ramon Vullings & Marc Heleven, would like to invite you to this quest called cross-industry innovation, learning from other sectors, not just to think outside the box -but even more importantly- to think outside of your industry.Ramon & Marc hope to inspire and enable you by developing your match sensitivity to make even better connections.

    Price: 17.99 £ | Shipping*: 3.99 £
  • Fashion Business and Digital Transformation : Technology and Innovation across the Fashion Industry
    Fashion Business and Digital Transformation : Technology and Innovation across the Fashion Industry

    Fashion Business and Digital Transformation provides a practical and holistic overview of the fashion industry and the key technologies impacting the fashion supply chain.It covers product design and development, production, sales and customer experiences in physical, online and virtual environments.The key technologies impacting the ecosystem are explored, including artificial intelligence, virtual reality, augmented reality, digital fashion design, NFTs, 3D textiles, and blockchain.Strategic concepts such as ‘retail-tainment’, ‘phygital’, gamification and e-commerce, are analysed, alongside the effect of these key strategies for both the retailer and the customer. Theoretical foundations are supported by extensive use of examples, interviews and case studies drawn from a wide range of global fashion disrupters and cutting-edge brands.Engaging activities, exercises, and technical step-by-step guides are incorporated throughout, which will both consolidate how technology is driving change in the industry, but also equip the reader with the key skills and digital literacy capabilities required by future practitioners.Online resources include chapter-by-chapter PowerPoint slides, a test bank and links to further resources. This examination of the digital transformation of the fashion industry will be essential reading for advanced undergraduate and postgraduate students of Fashion Management, Fashion Business and Fashion Technology.

    Price: 39.99 £ | Shipping*: 0.00 £
  • What is the purpose of touch sensors in industry and robotics?

    Touch sensors in industry and robotics serve the purpose of detecting physical contact or pressure. They are used to provide feedback on the interaction between a robotic system and its environment, allowing the system to adjust its movements or actions accordingly. In industrial settings, touch sensors can be used for quality control, safety monitoring, and precise positioning of machinery. In robotics, touch sensors enable robots to interact with objects and humans in a more natural and safe manner, making them suitable for tasks such as assembly, handling delicate materials, and collaborative work with humans.

  • For what purpose are key sensors used in robotics and industry?

    Key sensors are used in robotics and industry for various purposes such as detecting and measuring physical properties like temperature, pressure, proximity, and motion. These sensors provide crucial data to the robots or machines, enabling them to make informed decisions and perform tasks accurately. By using key sensors, robots and machines can ensure safety, improve efficiency, and enhance overall performance in industrial settings.

  • Is the flight attendant industry future-proof?

    The flight attendant industry may face challenges in the future due to technological advancements and changes in travel patterns. Automation and self-service technologies could potentially reduce the need for as many flight attendants on board. Additionally, the industry may be impacted by shifts in travel demand and the potential for economic downturns. However, the need for human interaction and safety on flights may still ensure a role for flight attendants in the industry, albeit with potential changes in job responsibilities and requirements. Overall, the future of the flight attendant industry may require adaptation to new technologies and travel trends.

  • How are families in the technology industry financed?

    Families in the technology industry are typically financed through a combination of personal savings, investments from venture capitalists or angel investors, and loans from financial institutions. Many tech startups rely on external funding to fuel their growth and development, as the industry often requires significant capital for research, development, and marketing. Additionally, some tech entrepreneurs may also turn to crowdfunding platforms or government grants to secure funding for their projects. Overall, the financing of families in the technology industry can vary depending on the specific needs and goals of each business.

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  • Process Innovation in the Global Fashion Industry
    Process Innovation in the Global Fashion Industry

    Process innovations - an improved way of doing things – help firms achieve higher-level performance by reducing the time and cost to produce a product or perform a service, and increasing productivity and growth. This book provides a comprehensive examination of process innovations occurring in the global fashion industry, with a focus on fashion brands from USA, Italy, and Japan.It offers practical insights for enhancing efficiency in the supply chain as well as management process such as work routines, information flow, and organization structures.Using case analyses, this book will help readers to grasp how successful fashion companies optimize their operations and advance their competitive position by integrating process innovations into their supply chain and management systems.

    Price: 54.99 £ | Shipping*: 0.00 £
  • Product Innovation in the Global Fashion Industry
    Product Innovation in the Global Fashion Industry

    As an initial attempt to understand innovation in fashion, this volume focuses on product innovations, realizing that this industry is truly an innovative sector in which diverse technologies, science, art, and tradition have been merged, synthesized, and utilized to solve the needs and concerns of the end-users.In doing so, this book categorizes product innovation into three levels—materials, style and product development—and aims to present the broader scope of innovation in the global fashion industry with the hope that other sectors can learn from these developments and be inspired.

    Price: 54.99 £ | Shipping*: 0.00 £
  • Plunkett’s Aerospace, Aircraft, Satellites & Drones Industry Almanac 2019
    Plunkett’s Aerospace, Aircraft, Satellites & Drones Industry Almanac 2019

    The global aerospace industry plays a vital role in commerce, communications, transportation, and defense.More than just aircraft and aircraft manufacturing, the aerospace industry is composed of original equipment manufacturing (OEM), avionics, electronics, rockets, space vehicles, satellites, and drones.The complex needs for achieving flight also makes the aerospace industry a key contributor to advancements in computing, advanced materials, and construction.Historically the stuff of fantasy, the development of the commercial space and drone industry of today adds a new dimension to the impact of aerospace in everyday life.This carefully-researched book covers exciting trends in the business of aerospace, aircraft, satellites and drones.This reference tool includes thorough market analysis as well as our highly respected trends analysis.It contains thousands of contacts for business and industry leaders, industry associations, Internet sites and other resources.This book also includes statistical tables, an industry glossary and thorough indexes.The corporate profiles section of the book includes our proprietary, in-depth profiles of hundreds of leading companies, worldwide, in all facets of the aerospace industry, including private and public firms. Here you'll find complete profiles of the hot companies that are making news today, the largest, most successful corporations in the business.You'll find a complete overview, industry analysis and market research report in one superb, value-priced package.

    Price: 376.00 £ | Shipping*: 0.00 £
  • Environmental Technology in the Oil Industry
    Environmental Technology in the Oil Industry

    FIGURE 1.1. BP group annual total air emissions by pollutant 1999–2004 (See Color Plates).FIGURE 1.2. BP group annual total air emissions* by business 1999–2004 (See Color Plates). evaporate. In addition, gas can be released from operations through contr- led process vents for safety protection.Further safety devices, such as flares, are used to burn excess hydrocarbons in the industry, but can allow a small proportion of hydrocarbon into the atmosphere without being burnt.Ind- try contains and controls these emissions wherever possible to minimize any loss of hydrocarbon.Hydrocarbon vapours, often described as volatile organic compounds or VOCs, are potentially harmful air pollutants, which can result in local health impacts as well as local or regional contributions to the formation of low-level ozone; which in turn, may also impact human health.Controlling hydrocarbon loss helps prevent impact on air quality and is also economically beneficial. 4 A. Ahnell and H. O’Leary In 2004, BP emitted 245 kilo-tonnes of non-methane hydrocarbons to air, a decrease of 24 kilo-tonnes (9%) compared with 2003.The largest prop- tion of these emissions came from the exploration and production businesses (44%), followed by refining and marketing (R&M) (35%).Combining methane and non-methane hydrocarbon totals provides a better idea of where most of the hydrocarbon emissions come from within the ind- try sectors.In BP’s case, the exploration and production activities account for 67% of the total volume of such hydrocarbons emitted to air in 2004.

    Price: 129.99 £ | Shipping*: 0.00 £
  • For what purpose are tactile sensors used in robotics and in industry?

    Tactile sensors are used in robotics and in industry for a variety of purposes. They are used to provide robots with the ability to sense and respond to touch, pressure, and vibration, allowing them to interact with their environment and handle delicate objects. In industry, tactile sensors are used in manufacturing processes to ensure the proper handling and assembly of products, as well as in quality control to detect defects or irregularities in materials. Overall, tactile sensors play a crucial role in enhancing the capabilities of robots and improving the efficiency and accuracy of industrial processes.

  • Why is pneumatic technology prescribed in the food industry?

    Pneumatic technology is prescribed in the food industry because it offers several advantages such as cleanliness, safety, and efficiency. Pneumatic systems are designed to be easily cleaned and sanitized, making them suitable for use in food processing and packaging. Additionally, pneumatic systems do not generate sparks, reducing the risk of fire or explosion in food production facilities. Furthermore, pneumatic technology allows for precise control and automation, leading to improved efficiency and productivity in food processing operations.

  • What are the marking methods in agriculture, industry, and technology?

    In agriculture, marking methods include tagging plants or animals with labels or ear tags to track their growth and health. In industry, marking methods involve using laser engraving, inkjet printing, or stamping to label products with important information such as serial numbers, expiration dates, or barcodes. In technology, marking methods can include using RFID tags, QR codes, or laser etching to track and identify electronic components or devices. These marking methods are essential for traceability, quality control, and inventory management in their respective fields.

  • How difficult is a study of robotics and automation?

    The study of robotics and automation can be challenging due to its interdisciplinary nature, requiring knowledge in fields such as mechanical engineering, electrical engineering, computer science, and control systems. Additionally, the rapid advancements in technology and the need to stay updated with the latest developments can add to the complexity of the study. However, with dedication, problem-solving skills, and a strong foundation in mathematics and physics, students can overcome these challenges and excel in the field of robotics and automation.

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