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Published simultaneously as Science and Technology Libraries; v.17, no.2, 1998. Seven contributions discuss the changing nature of scientific and technical librarianship (a personal perspective over 40 years), the Internet and science and technology reference instruction, and education for librarianship in engineering, chemistry, the health sciences, and geoscience. Annotation copyrighted by Book News, Inc., Portland, OR
As the academic and scholarly landscape are continuously enhanced by the advent of new technology, librarians must be aware and informed to develop and implement best practices. Effective administration of libraries is a crucial part of delivering library services to patrons and ensuring that information resources are disseminated efficiently. Advanced Methodologies and Technologies in Library Science, Information Management, and Scholarly Inquiry provides emerging information on modern knowledge management and effective means of sharing research through libraries. While highlighting the importance of digital literacy and information resources, readers will also learn new methods in information retrieval and research methods in quality scholarly inquiry. This book is an important resource for librarians, administrators, information science professionals, information technology specialists, students, and researchers seeking current information on the importance of effective library science technology.
During the past few years, groups like the President's Council of Advisors on Science and Technology, Center for Education have been placing great emphasis on the significance of STEM (science, technology, engineering, and math) education. In brief, the US is seen as falling behind the rest of the world in science and technology education. In response, the curricula have been revised in many educational institutions and school districts across the country. It is clear that for STEM to be successful, other community organizations, most particularly libraries, need to be closely involved in the process. Library staff realize the importance of getting involved in STEM education, but many have difficulty finding comprehensive information that will help them plan and successfully implement STEM direction in their organization. This book is designed to meet that need. It is timely and relevant. How to STEM: Science, Technology, Engineering, and Math Education in Libraries is by and for libraries who are involved in contributing efforts into advancing these subjects. It is organized in 9 parts including funding, grant writing, community partnerships, outreach, research, and examples of specific programming activities. Authors are drawn from the professional staffs of educational institutions, libraries, and non-profit organizations such as science museums. The book contains eight parts, each emphasizing a different aspect of how to succeed with STEM. Part 1 emphasizes how hands-on activities that are both fun and educational can be used to further STEM awareness. Parts 2 and 3 contain chapters on the uniting of STEM with Information Literacy. Innovative collection development ideas are discussed in Part 4 and Part 5 focuses on research and publishing. Outreach is the theme of Part 6 and the programs described in these chapters offer an array of ways to connect with students of all ages. The final section of How to STEM: Science, Technology, Engineering, and Math Education in Libraries addresses the funding of these programs. Librarians of all types will be pleased to discover easy-to-implement suggestions for collaborative efforts, many rich and diverse programming ideas, strategies for improving reference services and library instruction to speakers of English as a second language, marketing and promotional tips designed to welcome multicultural patrons into the library, and much more.
Libraries have historically played a role as a community builder, providing resources and spaces where knowledge can be archived, shared and created. They can also play a pivotal role in fostering the public's understanding of science and scientific processes. From makerspaces to data visualization labs to exhibits, many libraries already delve into scientific explorations and many more could join them. Scientists often need to include "broader impacts" goals in grant proposals, but they might not know where to begin or feel that they do not have the time to devote to public engagement. This is where libraries and librarians can help. Research in science communication also supports tapping into libraries for public engagement with science. Studies show that it is important for scientists to present findings in an apolitical way-not aligning with one solution or one way of thinking and not being seen as an activist (Druckman, 2015; Jamieson & Hardy, 2014). One of the core tenets of librarians and libraries is to present information in a neutral way. Research also shows that Informal conversations about science can have a greater effect on people than reading about it online or hearing about it on the news (Eveland & Cooper, 2013). Again, libraries can play a role in fostering these types of conversations. Given this landscape, this book will demonstrate concrete ways that libraries and librarians can play a role in fostering public engagement with science. In addition to background information on the current landscape of public knowledge and understanding of science, it will also include best practices and case studies of different types of programming and services that libraries can offer. Often libraries do not jump to mind when people think about science education or science literacy, and many librarians do not come from a science background. Literature on science programming and sharing science is largely absent from the library field. This book will help give confidence to librarians that they can participate in engaging the public with science. At the same time, it will provide a conduit to bring informal science educators, communication officers from universities or research organizations who share scientific discoveries with the public, and librarians together to explore ways to align their work to promote scientific literacy for all.
Since the 1950s there has been a persistent shortage of sci-tech librarians, and as more librarians retire or change positions, the prospect looms that the profession will only depopulate further. Tackling this difficult challenge, Recruiting, Training, and Retention of Science and Technology Librarians gathers together into one source the perspectives of top library administrators and managers as well as front-line librarians who present the latest research and practical strategies to find, train, and keep those valuable specialized professionals. This book explores in depth timely issues and presents creative perspectives and innovative solutions to this persistent problem in subject-specialized libraries. As the baby-boom generation of science and technology librarians begins to retire, training and keeping sci-tech librarians will become even more crucial. Recruiting, Training, and Retention of Science and Technology Librarians discusses the “replacement gap” problem in libraries, including who should be recruited, how they should be trained, and how to retain them once hired. Several authors address the field’s long-standing specialist vs. generalist debate, bringing new data and experience-driven perspectives to this challenging issue. Topics in Recruiting, Training, and Retention of Science and Technology Librarians include: updating the cultural image of librarians to make the profession more appealing a comprehensive literature review how to cultivate candidates who are dedicated to service and love research and learning practical approaches to improve the visibility and attractiveness of science librarianship the skills and support needed to become a successful science librarian an innovative program to recruit undergraduates an in-depth survey of practicing science and technology librarians the challenges of science librarianship in Africa library and information science educators as recruiters for sci-tech librarians creative strategies to recruit and retain librarians adapting aspects of first-year student retention programs as a model for library retention programs how professional competencies can be used for recruitment, training, and retention and more Recruiting, Training, and Retention of Science and Technology Librarians is a timely, important resource for college and university administrators, and public, special, academic, and government librarians.
Technology transfer: the role of the sci-tech librarian; New reference works in science and technology; Developing information systems for technology transfer; Emerging roles for academic librarians in the technology transfer process; American libraries and domestic technology transfer.
This book, first published in 1988, celebrates the development of sci-tech libraries in honour of the one hundredth anniversary of the founding of the first library school in the United States. The expert contributors provide a survey of the development of sci-tech libraries as well as some thoughts about their future. This comprehensive volume covers several types of sci-tech libraries, information retrieval, and library education. Library professionals will be fascinated but the journey of progress detailed in these well-written chapters.
With the perpetual advancements of technology, library and information science professionals are tasked with understanding these technologies and providing accurate and comprehensive information to other potential users. These professionals must develop best practices for understanding these technologies in order to best serve other users. The Handbook of Research on Emerging Trends and Technologies in Library and Information Science is a critical research book that examines advancing technologies and new innovations and their influences on library and information sciences for improved best practices. Featuring an array of topics such as digital libraries, distance education, and information literacy, this publication is essential for librarians, knowledge managers, information retrieval specialists, library and information science professionals, information scientists, researchers, web librarians, academicians, educators, IT specialists, and managers.
Informed by a large-scale survey of librarians across the spectrum of institution types, this guide will be a true technology companion to novices and seasoned LIS professionals alike.
As early as the 18th century, chemists’emphasis on up-to-date literature presented research librarians with many challenges. But now, Chemical Librarianship: Challenges and Opportunities will show you how you can adapt your methods to the rapidly evolving demands of twentieth-century chemical researchers without sacrificing your high standards of service. Altogether, this comprehensive overview helps you see the major role librarians still play in information education and gives you a broad assortment of strategies for coping with the accelerated demands of today's shifting electronic research environment.In Chemical Librarianship, you'll read about the revolutionary pedagogical experiments of librarians, teachers, computer specialists, and graduate students. You'll see how those experiments have altered the way they approach research--for the better--and how you can make positive adjustments in your own successful formulae. Individual chapters discuss: librarians as teachers the pros and cons of integrating/separating chemical information courses faculty and computing staff--partnership at the University of Florida Yale University's experiment with The Electronic Seminar System the evolution of electronic journals the most recent trends in academic serial collectionTake 100 mg of quickly changing research technology, a drop of increased enrollment, and 250 cc's of faculty requests, shake it up in an Erlenmeyer flask, heat it at 200 degrees Celsius, and what do you get? An explosion? A disaster? If these are your fears, put them away. Open up Chemical Librarianship and let some of the most informed experts on research and technology help you and your staff find just the right chemistry.