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  • Divine Foreknowledge – Four Views
    Divine Foreknowledge – Four Views

    The question of the nature of God's foreknowledge and how that relates to human freedom has been pondered and debated by Christian theologians at least since the time of Augustine. And the issue will not go away. More recently, the terms of the debate have shifted, and the issue has taken on new urgency with the theological proposal known as the openness of God.This view maintains that God's knowledge, while perfect, is limited regarding the future inasmuch as the future is "open" and not settled.This Spectrum Multiview volume provides a venue for well-known proponents of four distinct views of divine foreknowledge to present their cases:Gregory A.Boyd of Bethel College presents the open-theism view. David Hunt of Whittier College weighs in on the simple-foreknowledge view. William Lane Craig of Talbot School of Theology takes the middle-knowledge view. Paul Helm of Regent College, Vancouver, presents the Augustinian-Calvinist view. All four respond to each of the other essayists, noting points of agreement and disagreement.Editors James K. Beilby and Paul R. Eddy introduce the contemporary debate and also offer a conclusion that helps you evaluate the relative strengths and weaknesses of each view.The result is a unique opportunity to grapple with the issues and arguments and frame your own understanding of this important debate. Spectrum Multiview Books offer a range of viewpoints on contested topics within Christianity, giving contributors the opportunity to present their position and also respond to others in this dynamic publishing format.

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  • Pioneering Progress : American Science, Technology, and Innovation Policy
    Pioneering Progress : American Science, Technology, and Innovation Policy


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  • 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.

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  • 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 £
  • Does market research hinder innovation in business administration?

    Market research does not necessarily hinder innovation in business administration. In fact, it can provide valuable insights into consumer needs and preferences, helping businesses to develop innovative products and services that meet market demands. By understanding market trends and customer behavior, businesses can identify opportunities for innovation and stay ahead of competitors. However, relying too heavily on market research without allowing room for creativity and risk-taking can limit the potential for groundbreaking innovations. It is important for businesses to strike a balance between leveraging market research and fostering a culture of innovation to drive success in business administration.

  • Which Arab country is the most advanced in terms of education, technology, and science?

    It is difficult to determine which Arab country is the most advanced in terms of education, technology, and science as different countries excel in different areas. However, countries like the United Arab Emirates, Qatar, and Saudi Arabia have made significant investments in these sectors and have seen rapid advancements in recent years. The UAE, for example, has established itself as a hub for innovation and technology with initiatives like Dubai's Smart City project and the establishment of world-class universities. Qatar has also made strides in education and research with institutions like Qatar Foundation and Education City.

  • Could science fiction technology become real?

    Yes, science fiction technology could become real in the future. Many of the technological advancements that were once considered science fiction, such as video calling, self-driving cars, and virtual reality, have already become a reality. With continued advancements in science and technology, it is possible that other futuristic technologies, such as teleportation or advanced artificial intelligence, could also become a reality in the future. While some science fiction technologies may still be far-fetched, it is important to remember that many of today's realities were once considered impossible in the past.

  • What research topic could one choose for a paper on gender in science education?

    One possible research topic for a paper on gender in science education could be the impact of gender stereotypes on student participation and achievement in science classrooms. This could involve examining how stereotypes about girls' and boys' abilities in science affect their confidence, engagement, and performance in the subject. Another potential topic could be the underrepresentation of women in STEM fields and the factors that contribute to this disparity, such as societal expectations, lack of female role models, and biases in the education system. Additionally, a research paper could explore the effectiveness of interventions and strategies aimed at promoting gender equity in science education, such as inclusive teaching practices and mentorship programs for female students.

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  • Theology at Paris, 1316–1345 : Peter Auriol and the Problem of Divine Foreknowledge and Future Contingents
    Theology at Paris, 1316–1345 : Peter Auriol and the Problem of Divine Foreknowledge and Future Contingents

    Chris Schabel presents a detailed analysis of the radical solution given by the Franciscan Peter Auriol to the problem of reconciling divine foreknowledge with the contingency of the future, and of contemporary reactions to it.Auriol's solution appeared to many of his contemporaries to deny God's knowledge of the future altogether, and so it provoked intense and long-lasting controversy; Schabel is the first to examine in detail the philosophical and theological background to Auriol's discussion, and to provide a full analysis of Auriol's own writings on the question and the immediate reactions to them. This book sheds new light both on one of the central philosophical debates of the Middle Ages, and on theology and philosophy at the University of Paris in the first half of the 14th century, a period of Parisian intellectual life which has been largely neglected until now.

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  • 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.

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  • Gender Differences in Technology and Innovation Management : Insights from Experimental Research
    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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  • 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.

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  • What is Natural Science and Technology (NWT)?

    Natural Science and Technology (NWT) is an interdisciplinary subject that combines elements of natural sciences, technology, and engineering. It focuses on understanding the natural world, how technology impacts our lives, and how we can use scientific knowledge to solve real-world problems. NWT encourages students to explore the connections between science and technology and how they influence each other in our daily lives. Through hands-on experiments, research projects, and critical thinking activities, students develop a deeper understanding of the world around them and the role of science and technology in shaping our future.

  • How are natural science and technology related?

    Natural science and technology are closely related as they both involve the study and understanding of the natural world. Natural science seeks to understand the fundamental principles and laws that govern the natural world, while technology applies this understanding to create practical solutions to real-world problems. Technology often builds upon the knowledge gained from natural science to develop new tools, materials, and processes that improve our lives and our understanding of the natural world. In this way, natural science and technology work hand in hand to advance our understanding and utilization of the natural world.

  • How difficult is the school education for the information technology assistant for computer science in class 1?

    The school education for an information technology assistant in computer science in class 1 is typically not very difficult. Students at this level are usually introduced to basic concepts of computer science, such as understanding the parts of a computer, using simple software applications, and learning basic coding skills. The curriculum is designed to be engaging and hands-on to help students develop a strong foundation in IT. With the right support and guidance from teachers, most students should be able to grasp the material easily.

  • Is a year of self-discovery after completing education meaningful?

    A year of self-discovery after completing education can be incredibly meaningful. It provides an opportunity to explore personal interests, passions, and goals without the pressure of academic deadlines and responsibilities. This time can be used to travel, volunteer, or pursue new hobbies, allowing for personal growth and a deeper understanding of oneself. It can also help in making more informed decisions about future career paths and life goals. Overall, a year of self-discovery can be a valuable and enriching experience that sets the stage for a fulfilling and purposeful life.

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