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    The bioeconomy is steadily becoming more important in regional, national and European public policies.As it encompasses the transformation of agricultural, marine and organic resources into food, feed, fuels, energy and materials, the bioeconomy should become a major new industry, outlining the possibility of a post-fossil future.This book is the first attempt to depict the origins, formation and challenges of this new industry in terms of emerging institutions, innovation and economic strategies.The result of this work is that the substitution of raw materials alone is not enough to get out of the fossil economy. This book develops a political economy of the ecological transition which theorizes the transition as a new crisis of capitalism.This phase is characterized by stakeholders’ attempts to develop renewed rationales and strategies to take control of the reorganization of flows of natural resources, their outcomes and their evaluation.The proposed framework considers recent results in four complementary research strands: transition studies, institutional economics, ecological economics and the evolutionary economics of innovation. The book will be of interest to researchers interested in the development of the bioeconomy, and both researchers and students seeking to understand the role of heterodox economics in the ecological transition.

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  • Fashion and Environmental Sustainability : Entrepreneurship, Innovation and Technology
    Fashion and Environmental Sustainability : Entrepreneurship, Innovation and Technology

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  • Digital Technology and Sustainability : Engaging the Paradox
    Digital Technology and Sustainability : Engaging the Paradox

    This book brings together diverse voices from across the field of sustainable human computer interaction (SHCI) to discuss what it means for digital technology to support sustainability and how humans and technology can work together optimally for a more sustainable future. Contemporary digital technologies are hailed by tech companies, governments and academics as leading-edge solutions to the challenges of environmental sustainability; smarter homes, more persuasive technologies, and a robust Internet of Things hold the promise for creating a greener world.Yet, deployments of interactive technologies for such purposes often lead to a paradox: they algorithmically "optimize" heating and lighting of houses without regard to the dynamics of daily life in the home; they can collect and display data that allow us to reflect on energy and emissions, yet the same information can cause us to raise our expectations for comfort and convenience; they might allow us to share best practice for sustainable living through social networking and online communities, yet these same systems further our participation in consumerism and contribute to an ever-greater volume of electronic waste.By acknowledging these paradoxes, this book represents a significant critical inquiry into digital technology’s longer-term impact on ideals of sustainability. Written by an interdisciplinary team of contributors this book will be of great interest to students and scholars of human computer interaction and environmental studies.

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  • Innovation in Energy Security and Long-Term Energy Efficiency
    Innovation in Energy Security and Long-Term Energy Efficiency

    The sustainable development of our planet depends on the use of energy. The growing population of the world inevitably causes an increase in the demand for energy, which, on the one hand, threatens the potential for shortages of energy supply, and, on the other hand, causes the deterioration of the environment.Therefore, our task is to reduce this demand through different innovative solutions (i.e., both technological and social). Social marketing and economic policies can also play a role in affecting the behavior of households and companies, by causing behavioral change oriented to energy stewardship, and an overall switch to renewable energy resources. This book provides a platform for the exchange of a wide range of ideas, which, ultimately, would facilitate the driving of societies to long-term energy efficiency.

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  • Is the technical diploma in automation technology difficult?

    The difficulty of the technical diploma in automation technology can vary depending on the individual's background, experience, and aptitude for the subject matter. Some students may find the coursework challenging due to the complex concepts and technical skills required, while others with a strong foundation in math, science, and technology may find it more manageable. Overall, dedication, hard work, and a genuine interest in automation technology can help students succeed in completing the program.

  • Is the electronics technician for automation technology difficult?

    Becoming an electronics technician for automation technology can be challenging, as it requires a strong understanding of electrical systems, programming, and automation technology. The field is constantly evolving, so technicians must stay updated on the latest advancements and technologies. However, with dedication and the right training, individuals can develop the skills and knowledge needed to succeed in this role. It may be difficult at times, but the opportunities for growth and the potential to work on cutting-edge technology make it a rewarding career choice for those passionate about automation.

  • What is the difference between automation technology and mechatronics?

    Automation technology focuses on the use of control systems to operate equipment and processes with minimal human intervention. It involves the use of sensors, actuators, and controllers to automate tasks. Mechatronics, on the other hand, is a multidisciplinary field that combines elements of mechanical engineering, electrical engineering, and computer science to design and create intelligent systems. Mechatronics integrates mechanical systems with electronics and computer control to create advanced automated systems that can perform complex tasks. In summary, automation technology is a subset of mechatronics, which is a broader field encompassing a wider range of technologies and disciplines.

  • Is the profession of automation technology electronics technician future-proof?

    Yes, the profession of automation technology electronics technician is considered future-proof. With the increasing demand for automation in various industries, the need for skilled technicians to design, install, and maintain automated systems is expected to grow. As technology continues to advance, automation technology electronics technicians will play a crucial role in ensuring that these systems operate efficiently and effectively. Additionally, the skills and knowledge required for this profession are transferable to other emerging technologies, making it a versatile and in-demand career choice for the future.

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  • Evolution of the Global Fitness Industry : Strategy, Sustainability and Innovation
    Evolution of the Global Fitness Industry : Strategy, Sustainability and Innovation

    The pandemic has taught us all how important it can be to look after our physical and mental health, and how worthwhile it is to invest in taking care of ourselves.This short book illustrates the main trends that are modifying the fitness industry worldwide and highlights contemporary relevance to strategic change.It outlines what is currently happening within the promising fitness market and analyses the major emerging trends and the scientific data, referring to startups that could become very interesting market players in the years to come.Sustainability and technology will be the subject of in-depth analysis, as they represent the main drivers that will guide the sector in the future.The book also considers the most important aspect of sustainability related to the fitness industry and wellness more generally: the Silver Economy.The analysis is supported by an extensive database involving the 100 leading companies in the sector worldwide.The novelty of this research is to provide a document analysing the typical characteristics of this market, consumption dynamics, consumer triggers, and underlying the socio-economic scenario.The treatment of key themes such as fitness-tech startups, sport strategic management and above all innovation and sustainability make the book unique and appealing to researchers, academics, students, and practitioners.

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  • Understanding Urban Cycling : Exploring the Relationship Between Mobility, Sustainability and Capital
    Understanding Urban Cycling : Exploring the Relationship Between Mobility, Sustainability and Capital

    Academic interest in cycling has burgeoned in recent years with significant literature relating to the health and environmental benefits of cycling, the necessity for cycle-specific infrastructure, and the embodied experiences of cycling. Based upon primary research in a variety of contexts such as London, Shanghai and Taipei, this book demonstrates that recent developments in urban cycling policy and practice are closely linked to broader processes of capital accumulation.It argues that cycling is increasingly caught up in discourses around smart cities that emphasise technological solutions to environmental problems and neoliberal ideas on individual responsibility and bio-political conduct, which only results in solutions that prioritise those who are already mobile.Accordingly, the central argument of the book is not that the popularisation of cycling is inherently bad, but that the manner in which cycling is being popularised gives cause for social and environmental concern.Ultimately the book argues that cycling has now become a vehicle for sustaining pro-growth agendas rather than subverting them or shifting to sustainable no-growth/de-growth and less technologically driven visions of modernity. This book makes an innovative contribution to the fields of Cycling Studies, Mobilities and Transport and will be of interest to students and academics working in Human Geography, Transport Studies, Urban Studies, Urban Planning, Public Policy, Sociology and Sustainability.

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  • Navigating the Complexity Across the Peace–Sustainability–Climate Security Nexus
    Navigating the Complexity Across the Peace–Sustainability–Climate Security Nexus

    Promoting peace and sustainability in human development while accounting for the risks associated with the impact of climate change on society has become more imperative than ever when addressing humanity's challenges of the twenty-first century.There is enough evidence that peace, sustainability, and climate security are entangled with multiple complex interactions and cannot be dealt with in isolation and independently from the environment and the numerous systems with which they interact.Yet, the intersection of peace, sustainability, and climate security or their opposites (i.e., conflict, unsustainability, and climate vulnerability) is rarely articulated with a systemic mindset.A multi-solving nexus approach is more appropriate to capture the complexity and uncertainty of how the three sectors of peace, sustainability, and climate security play a role in community development, the nature of their causal chains, and the feedback on how community development affects the three sectors.Navigating the Complexity Across the Peace–Sustainability–Climate Security Nexus explores the value proposition of using a systems approach, methodology, and tools to comprehend and model that dynamic. Features of the book: Explores the interaction between the different components of peace and the relationship between peace, sustainability, and climate security using semi-qualitative and quantitative tools; Explains how climate adaptation and mitigation are related to peace or conflict; Presents generic system dynamics modeling that can be used in different contexts.

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  • Made in Italy and the Luxury Market : Heritage, Sustainability and Innovation
    Made in Italy and the Luxury Market : Heritage, Sustainability and Innovation

    Made in Italy holds a highly significant position in the global luxury market, as an economic, cultural, and social phenomenon, and the textbook example of the country-of-origin effect.Whilst in the past luxury was conceptualized as an exclusive benefit of the few, it is now a highly diversified ecosystem with disruptive challenges to its identity and authenticity, led by new customer segments.This book – through an analysis of diverse cases – answers the key issues in the industry of the new Made in Italy luxury, with a particular focus on sustainability. The book provides an in-depth view into luxury Made in Italy, from historical roots, heritage, and tradition to major forces of change and innovative, entrepreneurial adaptations in the 21st century.It situates Made in Italy in the broader global context of change, with regards to the call for sustainable manufacturing and consumption.Written by an international pool of academics and experts in luxury brand management, the book presents a series of case studies to explore how the industry is responding to new consumer expectations and demand to maintain competitive advantage. This unique collection will be of interest for academics, scholars, and upper-level students across the fields of luxury management and marketing, brand management, consumer behavior as well as sustainability.

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  • What is the difference between automation technology, PLC, and PCS7?

    Automation technology refers to the use of control systems, such as PLC and PCS7, to automate industrial processes. PLC (Programmable Logic Controller) is a type of control system that uses a programmable memory to store instructions and execute specific functions, such as controlling machinery on a factory floor. PCS7 (Process Control System 7) is a specific type of automation technology developed by Siemens, which integrates various control systems and devices to monitor and control industrial processes in real-time. In summary, automation technology is the broader concept that encompasses the use of control systems like PLC and PCS7 to automate industrial processes, while PLC and PCS7 are specific types of control systems used in automation technology.

  • How are electronics technicians trained for automation technology?

    Electronics technicians are trained for automation technology through a combination of formal education and on-the-job training. They typically complete a post-secondary program in electronics or a related field, where they learn about electrical circuits, digital electronics, and control systems. Additionally, they receive specialized training in automation technology, which includes learning about programmable logic controllers (PLCs), industrial robotics, and process control systems. This training may also involve hands-on experience with automation equipment and systems in a lab or industrial setting. Overall, electronics technicians are trained to understand and troubleshoot the complex systems used in automation technology.

  • How could a mind map on the topic of sustainability in mobility look like?

    A mind map on sustainability in mobility could have "sustainability" as the central topic, with branches extending out to cover various aspects such as alternative fuels, public transportation, electric vehicles, bike sharing, and urban planning. Each of these branches could further extend to include subtopics like environmental impact, energy efficiency, social equity, and economic benefits. The mind map could also include connections between these different aspects to show how they are interrelated and contribute to overall sustainability in mobility. Overall, the mind map would provide a visual representation of the complex and interconnected nature of sustainability in mobility.

  • What is the aptitude test for the profession of automation technology electronics technician?

    The aptitude test for the profession of automation technology electronics technician typically assesses a candidate's understanding of technical concepts, problem-solving skills, and ability to work with electronic components. It may include questions related to electrical circuits, digital electronics, programming languages, and troubleshooting techniques. Candidates may also be required to demonstrate their practical skills through hands-on tasks or simulations. Overall, the test aims to evaluate the candidate's suitability for the role by assessing their technical knowledge and practical abilities in the field of automation technology.

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