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Innovation Competency Model : Shaping Faculty Academic Innovation Development in China's Higher Education
Contributing to the discussion over China's higher education development, this book takes a theoretical approach to address the topic of university academics' innovation by introducing an academic innovation competency model, exploring the contexts, concepts and practices.The innovation competency model comprises three interdependent dimensions, including the academic internal drive vitality, the academic synthesizing refined ability and the academic suspected and introspective ability.By enriching the theory of professional development of university teachers, these three dimensions will help advance the reform of college personnel systems and ultimately improve the quality of China's higher education. The book will be valuable to researchers, students and stakeholders hoping to learn about education reform in China, or to those who study higher education management and comparative education.
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Rethinking Education for Sustainable Development : Research, Policy and Practice
This book explores how education can be used as a tool to promote sustainability practices as the world faces huge challenges related to climate change and public health.The chapters consider all types of literacy approaches that fall under the umbrella of Education for Sustainable Development (ESD).These approaches include scientific literacy, ecological literacy, health literacy, education on climate change and climate resilience, environmental education and others linking education, global health, and the environment more broadly. “Education” is used in the widest sense to incorporate non-formal, informal and formal/school settings.This volume will help to bring these interconnected areas together and interrogate their research methods, assumptions, field-based application and their policy potential.Taking a critical approach to ESD, the book suggests new pedagogies, tools, and technologies to strengthen the way we educate about sustainability issues and go beyond the current thinking about ESD.The book includes a foreword by Jeffrey Sachs, Director of the Center for Sustainable Development at Columbia University, USA.
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Gender Differences in Technology and Innovation Management : Insights from Experimental Research
Even though the number of working women has steadily increased over the last few years, women are still significantly under-represented in STEM activities (i.e. mathematics, informatics, science and technology). In order to eliminate this under-representation, numerous education policies and corporate initiatives, particularly in the recent past, have been aimed at increasing women's enthusiasm for STEM activities and professions.According to the latest surveys, however, it is clear that these efforts have not yet led to the desired success.Compared to their male counterparts, women continue to do fewer STEM activities. One possible reason for this is that relatively little is yet known about the concrete impact of the above education policies on working with innovation and technology: What are the gender differences between women and men?Is it enough to recognize these differences, or should these differences ideally not only be recognized, but also treated appropriately or even encouraged? This anthology deals with current topics in technology and innovation management against the background of these and other gender-relevant aspects.Empirical analyses and experiments in collaboration with companies from various sectors provide a sound scientific basis on which new results and findings are presented: How do women and men deal with creativity and competition?How are technologies applied and how can differences in access to technology be deduced? Answers to these and other questions help decision-makers in politics and business to proactively use the differences between women and men to motivate women to work in the STEM field and to strengthen them by acknowledging existing differences.
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Digital Holocaust Memory, Education and Research
This book explores the diverse range of practical and theoretical challenges and possibilities that digital technologies and platforms pose for Holocaust memory, education and research.From social media to virtual reality, 360-degree imaging to machine learning, there can be no doubt that digital media penetrate practice in these fields.As the Holocaust moves beyond living memory towards solely mediated memory, it is imperative that we pay critical attention to the way digital technologies are shaping public memory and education and research.Bringing together the voices of heritage and educational professionals, and academics from the arts and humanities and the social sciences, this interdisciplinary collection explores the practicalities of creating digital Holocaust projects, the educational value of such initiatives, and considers the extent to which digital technologies change the way we remember, learn about and research the Holocaust, thinking through issues such as ethics, embodiment, agency, community, and immersion.At its core, this volume interrogates the extent to which digital interventions in these fields mark an epochal shift in Holocaust memory, education and research, or whether they continue to be shaped by long-standing debates and guidelines developed in the broadcast era.
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Are polymer bracelets toxic?
Polymer bracelets are generally not toxic, as they are made from non-toxic materials such as silicone, rubber, or plastic. However, it is important to ensure that the bracelets are made from high-quality, non-toxic materials, as some cheaper or counterfeit versions may contain harmful chemicals. It is always best to purchase polymer bracelets from reputable sources to ensure their safety.
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Is the lithium polymer battery toxic?
Lithium polymer batteries are not inherently toxic, but they can be harmful if they are punctured, damaged, or improperly disposed of. The electrolyte in lithium polymer batteries is flammable and can be corrosive if it comes into contact with skin or eyes. It is important to handle and dispose of lithium polymer batteries properly to prevent any potential harm to human health or the environment.
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Where can I buy polymer clay?
You can buy polymer clay at most craft stores, art supply stores, and online retailers. Some popular craft store chains that carry polymer clay include Michaels, Joann, and Hobby Lobby. You can also find a wide variety of polymer clay brands and colors on websites like Amazon, Etsy, and specialty polymer clay suppliers. If you prefer to shop in person, check the craft and art supply stores in your local area.
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What are polymer crystalline and amorphous structures?
Polymer crystalline structures are highly ordered arrangements of polymer chains, where the chains are aligned in a regular, repeating pattern. This results in a highly organized and dense structure with distinct melting points and high mechanical strength. On the other hand, polymer amorphous structures are disordered arrangements of polymer chains, where the chains are randomly oriented and lack a repeating pattern. This results in a less organized and more open structure with no distinct melting point and lower mechanical strength. The combination of crystalline and amorphous regions in a polymer determines its overall properties and behavior.
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Lithium ion Battery 3.7V 2000mAh 103048 For Digital products technology products Polymer lithium
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Lithium ion Battery 3.7V 2000mAh 103048 For Digital products technology products Polymer lithium
Lithium ion Battery 3.7V 2000mAh 103048 For Digital products technology products Polymer lithium
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Is organocatalysis also important in polymer chemistry?
Yes, organocatalysis plays a significant role in polymer chemistry. Organocatalysts can be used in various polymerization reactions to control the polymerization process, improve reaction efficiency, and enhance the properties of the resulting polymers. They can also be used to catalyze specific reactions, such as ring-opening polymerization, to produce polymers with desired structures and properties. Overall, organocatalysis is a valuable tool in polymer chemistry for the synthesis of a wide range of functional polymers.
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What is polymer chemistry and how does polymerization work?
Polymer chemistry is the study of macromolecules composed of repeating structural units called monomers. These macromolecules, known as polymers, have a wide range of applications in everyday life, including plastics, rubber, fibers, and adhesives. Polymerization is the process by which monomers are chemically bonded together to form a polymer. This can occur through various mechanisms, such as addition polymerization, where monomers add to each other to form a polymer chain, or condensation polymerization, where monomers react to eliminate small molecules like water or alcohol to form a polymer. The resulting polymer can have different properties depending on the type of monomers and the polymerization process used.
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What are the characteristics of rechargeable lithium polymer batteries?
Rechargeable lithium polymer batteries are known for their high energy density, which allows them to store a large amount of energy in a compact and lightweight package. They also have a long cycle life, meaning they can be recharged and discharged many times before their performance starts to degrade. Additionally, lithium polymer batteries are known for their flexibility in shape and size, making them suitable for a wide range of applications. They also have a low self-discharge rate, meaning they can hold their charge for longer periods of time when not in use.
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What is the difference between Fimo and polymer clay?
Fimo is actually a brand of polymer clay, so the main difference is that Fimo is a specific type of polymer clay. Polymer clay is a type of modeling clay that hardens when baked in an oven, and it is made of PVC particles mixed with a plasticizer and color pigments. Fimo, on the other hand, is a specific brand of polymer clay that is known for its high quality and vibrant colors. While there are other brands of polymer clay available, Fimo is often preferred by artists and crafters for its consistency and durability.
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