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  • Material Innovation : Packaging Design
    Material Innovation : Packaging Design

    The third volume in this series is on packaging design and features carefully selected products that showcase the innovative use of a particular material.The book focuses on specific categories of packaging – sustainable packaging, functional forms, dispensing systems, advanced protection, interactive and mass craft.Seven specially commissioned ‘visual narratives’ are included.The extensive illustrated materials directory contains detailed information on over 100 materials.

    Price: 18.95 £ | Shipping*: 3.99 £
  • Sustainable Food Packaging Technology
    Sustainable Food Packaging Technology

    Towards more sustainable packaging with biodegradable materials! The combination of the continuously increasing food packaging waste with the non-biodegradable nature of the plastic materials that have a big slice of the packaging market makes it necessary to move towards sustainable packaging for the benefit of the environment and human health.Sustainable packaging is the type of packaging that can provide to food the necessary protection conditions, but at the same type is biodegradable and can be disposed as organic waste to the landfills in order to biodegrade through a natural procedure.In this way, sustainable packaging becomes part of the circular economy. ?Sustainable Food Packaging Technology? deals with packaging solutions that use engineered biopolymers or biocomposites that have suitable physicochemical properties for food contact and protection and originate both from renewable or non-renewable resources, but in both cases are compostable or edible.Modified paper and cardboard with increased protective properties towards food while keeping their compostability are presented as well.The book also covers natural components that can make the packaging functional, e.g., by providing active protection to the food indicating food spoilage. * Addresses urgent problems: food packaging creates a lot of hard-to-recycle waste - this book puts forward more sustainable solutions using biodegradable materials * State-of-the-art: ?Sustainable Food Packaging Technology? provides knowledge on new developments in functional packaging * From lab to large-scale applications: expert authors report on the technology aspects of sustainable packaging

    Price: 131.95 £ | Shipping*: 0.00 £
  • Pioneering Progress : American Science, Technology, and Innovation Policy
    Pioneering Progress : American Science, Technology, and Innovation Policy


    Price: 48.00 £ | Shipping*: 0.00 £
  • Handbook of Research on Science Teacher Education
    Handbook of Research on Science Teacher Education

    This groundbreaking handbook offers a contemporary and thorough review of research relating directly to the preparation, induction, and career long professional learning of K–12 science teachers. Through critical and concise chapters, this volume provides essential insights into science teacher education that range from their learning as individuals to the programs that cultivate their knowledge and practices.Each chapter is a current review of research that depicts the area, and then points to empirically based conclusions or suggestions for science teacher educators or educational researchers.Issues associated with equity are embedded within each chapter.Drawing on the work of over one hundred contributors from across the globe, this handbook has 35 chapters that cover established, emergent, diverse, and pioneering areas of research, including: Research methods and methodologies in science teacher education, including discussions of the purpose of science teacher education research and equitable perspectives; Formal and informal teacher education programs that span from early childhood educators to the complexity of preparation, to the role of informal settings such as museums; Continuous professional learning of science teachers that supports building cultural responsiveness and teacher leadership; Core topics in science teacher education that focus on teacher knowledge, educative curricula, and working with all students; and Emerging areas in science teacher education such as STEM education, global education, and identity development. This comprehensive, in-depth text will be central to the work of science teacher educators, researchers in the field of science education, and all those who work closely with science teachers.

    Price: 99.99 £ | Shipping*: 0.00 £
  • Handbook of Research on Science Teacher Education
    Handbook of Research on Science Teacher Education

    This groundbreaking handbook offers a contemporary and thorough review of research relating directly to the preparation, induction, and career long professional learning of K–12 science teachers. Through critical and concise chapters, this volume provides essential insights into science teacher education that range from their learning as individuals to the programs that cultivate their knowledge and practices.Each chapter is a current review of research that depicts the area, and then points to empirically based conclusions or suggestions for science teacher educators or educational researchers.Issues associated with equity are embedded within each chapter.Drawing on the work of over one hundred contributors from across the globe, this handbook has 35 chapters that cover established, emergent, diverse, and pioneering areas of research, including: Research methods and methodologies in science teacher education, including discussions of the purpose of science teacher education research and equitable perspectives; Formal and informal teacher education programs that span from early childhood educators to the complexity of preparation, to the role of informal settings such as museums; Continuous professional learning of science teachers that supports building cultural responsiveness and teacher leadership; Core topics in science teacher education that focus on teacher knowledge, educative curricula, and working with all students; and Emerging areas in science teacher education such as STEM education, global education, and identity development. This comprehensive, in-depth text will be central to the work of science teacher educators, researchers in the field of science education, and all those who work closely with science teachers.

    Price: 250.00 £ | Shipping*: 0.00 £
  • Flexible Electronic Packaging and Encapsulation Technology
    Flexible Electronic Packaging and Encapsulation Technology

    Flexible Electronic Packaging and Encapsulation Technology A systematic introduction to the future of electronic packaging Electronic packaging materials are among the most important components of the broader electronics industry, capable of facilitating heat dissipation, redistributing stress on electronic components, and providing environmental protections for electronic systems.Recent advances in integrated circuits, especially the development of flexible electronic technology, have placed increasingly stringent demands on the capabilities of electronic packaging.These technologies have the potential to reshape our world, and they demand a generation of engineers capable of harnessing that potential.Flexible Electronic Packaging and Encapsulation Technology meets this demand with an introduction to the cutting-edge technologies available to package electronic components, as well as the testing methods and applications that bring these technologies to bear on the industry.These packaging technologies promise to bring lightness, flexibility, and environmental friendliness to the next generation of electronic systems.Flexible Electronic Packaging and Encapsulation Technology readers will also find: Survey of commercial electronic packaging materials and patents for reference purposesGuidelines for designing high-performance packaging materials with novel structuresAn authorial team of leading researchers in the field Flexible Electronic Packaging and Encapsulation Technology is ideal for materials scientists, electronics engineers, solid state physicists, professionals in the semiconductor industry, and any other researchers or professionals working with electronic systems.

    Price: 125.00 £ | Shipping*: 0.00 £
  • Handbook of Research on Science Education : Volume III
    Handbook of Research on Science Education : Volume III

    Volume III of this landmark synthesis of research offers a comprehensive, state-of-the-art survey highlighting new and emerging research perspectives in science education. Building on the foundations set in Volumes I and II, Volume III provides a globally minded, up-to-the-minute survey of the science education research community and represents the diversity of the field.Each chapter has been updated with new research and new content, and Volume III has been further developed to include new and expanded coverage on astronomy and space education, epistemic practices related to socioscientific issues,design-based research, interdisciplinary and STEM education, inclusive science education, and the global impact of nature of science and scientific inquiry literacy. As with the previous volumes, Volume III is organized around six themes: theory and methods of science education research; science learning; diversity and equity; science teaching; curriculum and assessment; and science teacher education.Each chapter presents an integrative review of the research on the topic it addresses, pulling together the existing research, working to understand historical trends and patterns in that body of scholarship, describing how the issue is conceptualized within the literature, how methods and theories have shaped the outcomes of the research, and where the strengths, weaknesses, and gaps are in the literature. Providing guidance to science education faculty, scholars, and graduate students, and pointing towards future directions of the field, Handbook of Research on Science Education Research, Volume III offers an essential resource to all members of the science education community.

    Price: 110.00 £ | Shipping*: 0.00 £
  • Makerspaces, Innovation and Science Education : How, Why, and What For?
    Makerspaces, Innovation and Science Education : How, Why, and What For?

    This book provides an overview to a range of theories in science and technology that inform the different ways in which makerspaces can be educative.Makerspaces are an indispensable site for science, technology, engineering, and mathematics (STEM) instruction and pose novel risks and opportunities for STEM instruction.Educators are likely to reach towards activities that have a high degree of engagement, but this might result in observations like 'it looks like fun, but what are they learning?'. Beginning from the question of how we know what we know in science, the author asserts that understanding scientific knowledge requires us to know more than the abstract concepts typically presented in schools.The social and material aspects of knowledge are also important—these take the form of questions such as: What is the interplay between knowledge and power?How do we understand that we can have a ‘feel’ for materials and artefacts that we cannot completely describe in words?How do we know what ideas ought to be made real though technology and engineering?Significantly, this book also discusses the ethical dimensions of STEM education, in thinking about the kinds of STEM education that could be useful for open futures. This book will be useful to graduate students and educators seeking an expansive view of STEM education.More generally, these ideas outline a possible new strategy for a vision of school that is not merely training or preparing students for work.Education needs to also prepare students for sociopolitical participation, and with STEM being central to our contemporary lives, this book provides insights for how this can happen in makerspaces.

    Price: 35.99 £ | Shipping*: 0.00 £

Similar search terms for Packaging:


  • How long should one leave the technology in the packaging?

    It is generally recommended to leave the technology in its packaging until you are ready to use it. This helps protect the device from any potential damage or dust accumulation. Once you are ready to set up and use the technology, you can carefully remove it from the packaging and follow the manufacturer's instructions for setup and installation.

  • What is the difference between standard packaging and frustration-free packaging?

    Standard packaging is the traditional packaging used for products, which often includes excess materials like plastic, cardboard, and twist ties. Frustration-free packaging, on the other hand, is designed to be easy to open and does not require tools like scissors or box cutters. It aims to reduce waste and make the unboxing experience more convenient for the consumer.

  • What are aluminum packaging?

    Aluminum packaging refers to containers, cans, and other forms of packaging made from aluminum. This type of packaging is lightweight, durable, and resistant to corrosion, making it suitable for a wide range of products including food, beverages, pharmaceuticals, and cosmetics. Aluminum packaging is also recyclable, making it an environmentally friendly choice for both consumers and businesses. Its ability to protect products from light, air, and moisture makes it a popular choice for preserving the quality and freshness of goods.

  • Do you have packaging?

    No, I do not have physical packaging as I am a virtual assistant and exist solely in digital form. However, I can assist with providing information or guidance on packaging materials, design, or best practices if needed.

  • What are annoying packaging?

    Annoying packaging refers to packaging that is difficult to open, excessive, or wasteful. This can include packaging that requires tools or excessive force to open, packaging that is too large for the product inside, or packaging that is not environmentally friendly. Annoying packaging can be frustrating for consumers and contribute to unnecessary waste.

  • What is empty packaging?

    Empty packaging refers to the outer or inner material that once contained a product but is now devoid of its contents. This can include boxes, bottles, bags, or any other type of packaging that is no longer holding the product it was designed for. Empty packaging is often discarded or recycled after the product has been used or consumed.

  • Do you keep packaging?

    As a language model AI, I do not have the capability to keep physical items such as packaging. However, it is important to consider the environmental impact of packaging and to try to minimize waste by reusing or recycling packaging whenever possible. Many people choose to keep packaging for a period of time in case they need to return or exchange the item, but it is important to find sustainable ways to manage packaging waste.

  • Do you need a packaging license if you use used packaging materials?

    It depends on the specific regulations in your location. In some places, using used packaging materials may still require a packaging license because the materials need to meet certain standards for safety and environmental impact. It's important to research the regulations in your area and consult with local authorities to determine if a packaging license is required for using used packaging materials.

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