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  • Cell Culture Technology
    Cell Culture Technology

    This textbook provides an overview on current cell culture techniques, conditions, and applications specifically focusing on human cell culture.This book is based on lectures, seminars and practical courses in stem cells, tissue engineering, regenerative medicine and 3D cell culture held at the University of Natural Resources and Life Sciences Vienna BOKU and the Gottfried Wilhelm Leibniz University Hannover, complemented by contributions from international experts, and therefore delivers in a compact and clear way important theoretical, as well as practical knowledge to advanced graduate students on cell culture techniques and the current status of research. The book is written for Master students and PhD candidates in biotechnology, tissue engineering and biomedicine working with mammalian, and specifically human cells. It will be of interest to doctoral colleges, Master- and PhD programs teaching courses in this area of research.

    Price: 59.99 £ | Shipping*: 0.00 £
  • Museums and Interactive Virtual Learning
    Museums and Interactive Virtual Learning

    Museums and Interactive Virtual Learning provides informal educators with practical resources that will help them to build dynamic digital engagement experiences within their own cultural organizations. Presenting vignettes from experienced museum educators and end users, as well as scientific data and practical resources, the book highlights the mutual benefits that Interactive Virtual Learning (IVL) programs offer to the museum and those visiting from a distance.Chapters mirror the step-by-step process of developing reputable IVL programs and emphasize how important it is for cultural organizations to encourage cross-departmental collaboration, if they wish to ensure that their programs align with the overall goals of the organization.Providing a thorough overview of the technologies, budget, marketing and staff requirements, the authors offer a realistic depiction of the work involved in building content for digital engagement.Emphasizing the importance of assessing existing programming, the book shows how institutions can adapt content to fit a virtual format and create inclusive digital engagement opportunities that reach local, national, and international audiences. Museums and Interactive Virtual Learning is an essential guide for professionals who are tasked with interpreting the content of a cultural organization and building lasting digital engagement opportunities.It will be particularly useful to those looking to reach diverse audiences.

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  • Technologies, Innovation, and Change in Personal and Virtual Learning Environments
    Technologies, Innovation, and Change in Personal and Virtual Learning Environments

    Over the last decade there continues to be an increase in the technology and how it affects our lives.Since then the incorporation of electronic databases and other communication tools for students, faculty and staff, virtual learning environments have become an important innovation in the student learning experience. Technologies, Innovation, and Change in Personal and Virtual Learning Environments presents a widespread collection of research on the growth, innovation and implementation of learning technologies for educators, technologists and trainers.The book is a useful source for academics and professionals interested in information and communication technologies.

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  • Science, Technology And Innovation Indicators : Lessons from the Development Experience in Africa
    Science, Technology And Innovation Indicators : Lessons from the Development Experience in Africa


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  • How does the process of cell culture technology proceed?

    Cell culture technology involves the growth and maintenance of cells outside of their natural environment, typically in a laboratory setting. The process begins with the selection of the appropriate cell type and the preparation of a suitable growth medium. The cells are then isolated from their natural environment and placed in a sterile culture vessel, where they are provided with the necessary nutrients and conditions for growth. The culture is regularly monitored and maintained to ensure the cells remain healthy and continue to proliferate. This technology is widely used in research, drug development, and biotechnology for studying cell behavior, producing biological products, and testing potential therapies.

  • Who is spying on us with cell phones and technology?

    Various entities can potentially spy on us with cell phones and technology, including government agencies, hackers, and even certain apps and companies. Government agencies may conduct surveillance for national security purposes, while hackers may try to access our personal information for malicious reasons. Additionally, some apps and companies may track our online activities and collect data for targeted advertising or other purposes. It's important to be mindful of our digital privacy and take steps to protect our personal information.

  • Does the daughter cell have the same cell type as the mother cell?

    The daughter cell may or may not have the same cell type as the mother cell. During cell division, if the daughter cell undergoes differentiation, it may develop into a different cell type than the mother cell. However, if the daughter cell undergoes mitosis, it will be an exact copy of the mother cell and will have the same cell type. Therefore, whether the daughter cell has the same cell type as the mother cell depends on the specific context of the cell division process.

  • What are the cell organelles in cell biology?

    Cell organelles are specialized structures within a cell that perform specific functions. Some of the main organelles in cell biology include the nucleus, which houses the cell's genetic material; mitochondria, which are responsible for producing energy; the endoplasmic reticulum, involved in protein synthesis and lipid metabolism; Golgi apparatus, which processes and packages proteins; lysosomes, which contain enzymes for breaking down waste materials; and the cytoskeleton, which provides structure and support to the cell. Each organelle plays a crucial role in the overall functioning of the cell.

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  • Technology for the Language Classroom : Creating a 21st Century Learning Experience
    Technology for the Language Classroom : Creating a 21st Century Learning Experience

    This volume in the ALLC series offers current and soon-to-be professionals in the ESL / EFL field a comprehensive guide to how to make the best use of technology to enhance the English language learning experience.The book has a predominant focus on practical insights that are based on successful real-life experiences at the classroom and study program level, including contributions from teachers in various countries.Nevertheless, there is also a strong foundation in existing research and literature as they relate to the needs of English language teachers.To promote reflective and exploratory practice, there is plenty of 'food-for-thought' for the reader. Although pre-service and in-service teachers represent the primary audience, the book is likely to be just as useful for language program administrators, researchers, curriculum and materials writers, and e-learning developers.

    Price: 27.99 £ | Shipping*: 0.00 £
  • Virtual Reality Technology
    Virtual Reality Technology

    Thorough overview of virtual reality technology fundamentals and latest advances, with coverage of hardware, software, human factors and applications, plus companion Laboratory Manual in Unity 3D. The Third Edition of the first comprehensive technical book on the subject of virtual reality, Virtual Reality Technology, provides updated and expanded coverage of VR technology, including where it originated, how it has evolved, and where it is going.Its primary objective is to be a complete, up-to-date textbook, as well as a source of information on a rapidly developing field of science and technology with broad societal impact. The two highly qualified authors cover all of the latest innovations and applications that are making virtual reality more important than ever before.Unlike other books on the subject, the book also includes a chapter on Human Factors, which are very important in designing technology around the human user. Virtual Reality Technology provides Instructors with a website-accessible Laboratory Manual using the Unity 3D game engine and programming language.Unity 3D is the preferred VR language these days and will prepare the student for the VR gaming and mobile applications industry.For universities Unity 3D is cost-effective as its student license is freely available. With comprehensive coverage of the subject, Virtual Reality Technology discusses sample topics such as: Input and output interfaces, including holographic displays, foveated head-mounted displays, neural interfaces, haptic and olfactory feedbackComputing architecture, with emphasis on the rendering pipeline, the graphics processing unit and distributed/edge renderingObject modeling, including physical and behavioral aspects, Artificial Intelligence controlled characters, and model management techniquesProgramming toolkits for virtual reality and the game production pipelineHuman factors issues such as user performance and sensorial conflict, cybersickness and societal impact aspects of VRApplication examples in medical education, virtual rehabilitation, virtual heritage, gaming, and military use of virtual reality. Virtual Reality Technology provides thorough and complete coverage of an in-demand sector of technology, making it a highly valuable resource for undergraduate and graduate students in computer science, engineering, and science, along with a variety of professionals across many different industries, including but not limited to engineering, gaming, healthcare, and defense.

    Price: 80.50 £ | Shipping*: 0.00 £
  • Creative Learning in Digital and Virtual Environments : Opportunities and Challenges of Technology-Enabled Learning and Creativity
    Creative Learning in Digital and Virtual Environments : Opportunities and Challenges of Technology-Enabled Learning and Creativity

    Originally published as a special issue of the Creativity Research Journal, this volume gives a balanced and reflective account of the challenges and opportunities of technology-enabled creative learning in contemporary societies. Providing a current and updated account of the challenges posed by the Coronavirus to online education, chapters more broadly offer conceptual reflections and empirically informed insights into the impact of technology on individual and collective creativity and learning.These thoughts are explored in relation to school achievement, the development of digital educational resources, online collaboration, and virtual working.Further, the book also considers how the creative use of technology poses risks to learning through the accidental or deliberate dissemination of misinformation, and online manipulation of common societal values in the era of COVID-19. Creative Learning in Digital and Virtual Environments looks at the connection between creativity, learning, and school achievement, and analyses the impact of virtual environments on creative expression.It will appeal to postgraduate students in the fields of creativity and learning, as well as to students and academics involved with broader research in areas such as the role of technology in education, e-Learning and distance education. Vlad P. Glaveanu is Associate Professor and Head of the Department of Psychology and Counselling at Webster University Geneva, Switzerland, as well as Associate Professor II at the University of Bergen, Norway. Ingunn Johanne Ness is a Senior Researcher at the Centre for the Science of Learning & Technology, University of Bergen, Norway. Constance de Saint Laurent is a Postdoctoral Researcher at the University of Bologna, Italy.

    Price: 38.99 £ | Shipping*: 0.00 £
  • Technology Innovation in Manufacturing
    Technology Innovation in Manufacturing

    This text identifies and discusses different technology innovation initiatives (TIIs) such as entrepreneurial capability, technology infrastructure capability, organizational culture and climate, and government initiatives.It further evaluates the relationship between various technology innovation initiatives and manufacturing performances using multi-criteria decision-making techniques such as fuzzy set theory (FST), structural equation modeling (SEM), and analytic hierarchy process (AHP).It will serve as an ideal reference text for graduate students and academic researchers in the field of industrial engineering, manufacturing engineering, mechanical engineering, automotive engineering. This book:• Discusses technology innovation initiatives such as entrepreneurial capability, technology infrastructure capability, and organizational culture. • Highlights technology innovation-strategy model in assisting manufacturing industries for enhancing their performance in today’s competitive environment. • Examines the effect of technology innovation initiatives on the performance of manufacturing industries. • Covers multi-criteria decision-making techniques such as fuzzy set theory, structural equation modeling, and analytic hierarchy process. • Explores the validation of fuzzy-based technology innovation model through structural equation modeling.

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  • What are half-cell reactions and cell reactions?

    Half-cell reactions are the individual chemical reactions that occur at each electrode in an electrochemical cell. In a half-cell reaction, electrons are either gained or lost, resulting in a change in oxidation state of the species involved. When two half-cell reactions are combined, they form a complete cell reaction, which describes the overall chemical process that occurs in the electrochemical cell. The cell reaction represents the overall flow of electrons and the transfer of species between the two half-cells.

  • How does each cell arise from another cell?

    Each cell arises from another cell through the process of cell division. During cell division, a parent cell duplicates its genetic material and then divides into two daughter cells. This process can occur through either mitosis, which produces two identical daughter cells, or meiosis, which produces four daughter cells with half the genetic material of the parent cell. In both cases, the new cells inherit their genetic material from the parent cell and continue the cycle of growth and division.

  • Why is the liver cell an animal cell?

    The liver cell is an animal cell because it is a part of the liver, which is an organ found in animals. Animal cells, including liver cells, are eukaryotic cells, meaning they have a true nucleus and other membrane-bound organelles. Additionally, animal cells do not have a cell wall, which is a characteristic of plant cells. The liver cell also performs specific functions related to the metabolism and detoxification of the body, which are essential for animal physiology.

  • Is the cell cycle the same as cell division?

    No, the cell cycle and cell division are not the same. The cell cycle is the series of events that take place in a cell leading to its division and duplication, including growth, DNA replication, and division. Cell division, on the other hand, specifically refers to the process by which a cell divides into two daughter cells. Cell division is just one phase of the cell cycle, which also includes interphase and cytokinesis.

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