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That sciences are guided by explicit and implicit ties to their surrounding social world is not new. Jaan Valsiner fills in the wide background of scholarship on the history of science, the recent focus on social studies of sciences, and the cultural and cognitive analyses of knowledge making. The theoretical scheme that he uses to explain the phenomena of social guidance of science comes from his thinking about processes of development in general--his theory of bounded indeterminacy--and on the relations of human beings with their culturally organized environments. Valsiner examines reasons for the slow and nonlinear progress of ideas in psychology as a science at the border of natural and social sciences. Why is that intellectual progress occurs in different countries at different times? Most responses are self-serving blinders for presenting science as a given rather than understanding it as a deeply human experience. For Valsiner, scientific knowledge is cultural at its core. Major changes have occurred in contemporary sciences--collective authorship, fragmentation of knowledge into small, quickly published (and equally quickly retractable) journal articles, and the counting of numbers of such articles by institutions as if that is a measure of "scientific productivity." Scientists are inherently ambivalent about the benefit of these changes for the actual development of knowledge. There is a gradual "takeover" of the domain of scientific knowledge creation by other social institutions with vested interests in defending and promoting knowledge that serves their social interests. Sciences are entering into a new form of social servitude.
Higher education is a strange beast. Teaching is a critical skill for scientists in academia, yet one that is barely touched upon in their professional training—despite being a substantial part of their career. This book is a practical guide for anyone teaching STEM-related academic disciplines at the college level, from graduate students teaching lab sections and newly appointed faculty to well-seasoned professors in want of fresh ideas. Terry McGlynn’s straightforward, no-nonsense approach avoids off-putting pedagogical jargon and enables instructors to become true ambassadors for science. For years, McGlynn has been addressing the need for practical and accessible advice for college science teachers through his popular blog Small Pond Science. Now he has gathered this advice as an easy read—one that can be ingested and put to use on short deadline. Readers will learn about topics ranging from creating a syllabus and developing grading rubrics to mastering online teaching and ensuring safety during lab and fieldwork. The book also offers advice on cultivating productive relationships with students, teaching assistants, and colleagues.
The perfect companion to any flight - a guide to the science on view from your window seat. There are few times when science is so immediate as when you're in a plane. Your life is in the hands of the scientists and engineers who enable tons of metal and plastic to hurtle through the sky at hundreds of miles an hour. Inflight Science shows how you stay alive up there - but that's only the beginning. Brian Clegg explains the ever changing view, whether it's crop circles or clouds, mountains or river deltas, and describes simple experiments to show how a wing provides lift, or what happens if you try to open a door in midair (don't!). On a plane you'll experience the impact of relativity, the power of natural radiation and the effect of altitude on the boiling point of tea. Among the many things you'll learn is why the sky is blue, the cause of thunderstorms and the impact of volcanic ash in an enjoyable tour of mid-air science. Every moment of your journey is an opportunity to experience science in action: Inflight Science will be your guide.
Scientists today working on controversial issues from climate change to drought to COVID-19 are finding themselves more often in the middle of deeply traumatizing or polarized conflicts they feel unprepared to referee. It is no longer enough for scientists to communicate a scientific topic clearly. They must now be experts not only in their fields of study, but also in navigating the thoughts, feelings, and opinions of members of the public they engage with, and with each other. And the conversations are growing more fraught. In Getting to the Heart of Science Communication, Faith Kearns has penned a succinct guide for navigating the human relationships critical to the success of practice-based science. This meticulously researched volume takes science communication to the next level, helping scientists to see the value of listening as well as talking, understanding power dynamics in relationships, and addressing the roles of trauma, loss, grief, and healing.
Nationally and internationally, educators now understand the critical importance of STEM subjects—science, technology, engineering, and mathematics. Today, the job of the classroom science teacher demands finding effective ways to meet current curricula standards and prepare students for a future in which a working knowledge of science and technology will dominate. But standards and goals don’t mean a thing unless we: • grab students’ attention; • capture and deepen children’s natural curiosity; • create an exciting learning environment that engages the learner; and • make science come alive inside and outside the classroom setting. A Guide to Teaching Elementary Science: Ten Easy Steps gives teachers, at all stages of classroom experience, exactly what the title implies. Written by lifelong educator Yvette Greenspan, this book is designed for busy classroom teachers who face tough conditions, from overcrowded classrooms to shrinking budgets, and too often end up anxious and overwhelmed by the challenges ahead and their desire for an excellent science program. This book: • helps teachers develop curricula compatible with the Next Generation Science Standards and the Common Core Standards; • provides easy-to-implement steps for setting up a science classroom, plus strategies for using all available resources to assemble needed teaching materials; • offers detailed sample lesson plans in each STEM subject, adaptable to age and ability and designed to embrace the needs of all learners; and • presents bonus information about organizing field trips and managing science fairs. Without question, effective science curricula can help students develop critical thinking skills and a lifelong passion for science. Yvette Greenspan received her doctorate degree in science education and has developed science curriculum at all levels. A career spent in teaching elementary students in an urban community, she now instructs college students, sharing her love for the teaching and learning of science. She considers it essential to encourage today’s students to be active learners and to concentrate on STEM topics that will help prepare them for the real world.
Research shows that environment-centered education improves student achievement. Whatever your school's setting-urban, suburban, or rural-you can create stimulating outdoor classrooms for your students, with a little help from Outdoor Science. Author and state science specialist Steve Rich shows teachers how to create outdoor learning spaces that can be used from year to year-with little extra effort or resources. These practical suggestions for creating, maintaining, and using outdoor classrooms work for both elementary and middle school students. The simple and inexpensive lessons satisf.
This book is a comprehensive guide to scientific communication that has been used widely in courses and workshops as well as by individual scientists and other professionals since its first publication in 2002. This revision accounts for the many ways in which the globalization of research and the changing media landscape have altered scientific communication over the past decade. With an increased focus throughout on how research is communicated in industry, government, and non-profit centers as well as in academia, it now covers such topics as the opportunities and perils of online publishing, the need for translation skills, and the communication of scientific findings to the broader world, both directly through speaking and writing and through the filter of traditional and social media. It also offers advice for those whose research concerns controversial issues, such as climate change and emerging viruses, in which clear and accurate communication is especially critical to the scientific community and the wider world.
"If the globe is warming, is mankind responsible, or is the sun?" Such a statement does not appear out of place in Bethell's entertaining account of how modern science is politically motivated and in desperate need of oversight. Bethell writes in a compulsively readable style, and although he provides legitimate insight into the potential benefits of nuclear power and hormesis, some readers will be turned off when he attempts to disprove global warming and especially evolution. Throughout the book, Bethell makes questionable claims about subjects as varied as AIDS ("careful U.S. studies had already shown that at least a thousand sexual contacts are needed to achieve heterosexual transmission of the virus") and extinction ("It is not possible definitely to attribute any given extinction to human activity"), and backs up his arguments with references to the music magazine SPIN and thriller-writer Michael Crichton. Ironically, Bethell ends up proving his own premise by producing a highly politicized account of how liberal intellectuals and unchecked government agencies have created a "white-coated priesthood" whose lust for grant money has driven them to produce fearsome (but in Bethell's view, false) tales of ozone destruction and AIDS pandemics. In the end, this book is unlikely to sway readers who aren't already in Bethell's ideological camp, as any points worthy of discussion get lost in the glut of unsourced claims that populate this latest installment of "The Politically Incorrect Guide" series.
Teacher's handbook for teaching science.
Discusses the major issues in science, including the structure of particles within the atom, origins of species, and the birth of the universe.