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Offering expertise in the teaching of writing (Kim Jaxon) and the teaching of science (Leslie Atkins Elliott and Irene Salter), this book will help instructors create classrooms in which students use writing to learn and think scientifically. The authors provide concrete approaches for engaging students in practices that mirror the work that writing plays in the development and dissemination of scientific ideas, as opposed to replicating the polished academic writing of research scientists. Addressing a range of genres that can help students deepen their scientific reasoning and inquiry, this text includes activities, guidelines, resources, and assessment suggestions. Composing Science is a valuable resource for university-level science faculty, science methods course instructors in teacher preparation programs, and secondary science teachers who have been asked to address the Common Core ELA Standards. Book Features: Provides models for integrating writing into science courses and lesson plans. Focuses on the work that science writing does, both in the development and dissemination of ideas. Addresses the Next Generation Science Standards and the Common Core ELA Standards. Includes samples of student work, classroom transcripts, and photographs that capture the visual elements of science writing. “The pedagogy described in Composing Science doesn’t only recapture the sense of the uncertainty of discovery, it also articulates and examines the social and collaborative writing practices that science uses to produce knowledge and reduce uncertainty. Without question, teachers of science will find this book inspirational and useful, college teachers for sure, but also teachers up and down the curriculum.” —Tom Fox, director, Site Development, National Writing Project “This book will be invaluable, not only for the genuinely new and wonderful ideas for teaching, but also and maybe more for the rich examples from the authors’ classes. Through the lens of writing we see students doing science—and it is truly science—in surprising and delightful ways.” —David Hammer, professor, Tufts University
Reprint of the original, first published in 1881.
Imagine the twentieth century without photography and film. Its history would be absent of images that define historical moments and generations: the death camps of Auschwitz, the assassination of John F. Kennedy, the Apollo lunar landing. It would be a history, in other words, of just artists’ renderings and the spoken and written word. To inhabitants of the twenty-first century, deeply immersed in visual culture, such a history seems insubstantial, imprecise, and even, perhaps, unscientific. Documenting the World is about the material and social life of photographs and film made in the scientific quest to document the world. Drawing on scholars from the fields of art history, visual anthropology, and science and technology studies, the chapters in this book explore how this documentation—from the initial recording of images, to their acquisition and storage, to their circulation—has altered our lives, our ways of knowing, our social and economic relationships, and even our surroundings. Far beyond mere illustration, photography and film have become an integral, transformative part of the world they seek to show us.
Packed with spectacular superlatives, shocking stats, fantastic facts and fun figures, Science and Stuff celebrates the simple joy in finding things out. What can cats teach us about the laws of physics? Why was cabbage banned on the International Space Station? (Can you fart in space?) And would a penny dropped from the Empire State Building really kill someone? (Short answer: No!)But it's not all facts and stats. The feature chapter just for Makers, introduced by our very own mad professor Burnaby Q. Orbax, challenges you to attempt record-breaking science experiments at home, from the fastest Mentos & Soda rocket car to the most slime thrown and caught in a minute!Join us as we rise from the deepest depths of the ocean, where weird glowing fish hunt in the darkness, to the mountaintop observatories where scientists unravel the secrets of the universe.
Reprint of the original, first published in 1877.
One of the pathways by which the scientific community confirms the validity of a new scientific discovery is by repeating the research that produced it. When a scientific effort fails to independently confirm the computations or results of a previous study, some fear that it may be a symptom of a lack of rigor in science, while others argue that such an observed inconsistency can be an important precursor to new discovery. Concerns about reproducibility and replicability have been expressed in both scientific and popular media. As these concerns came to light, Congress requested that the National Academies of Sciences, Engineering, and Medicine conduct a study to assess the extent of issues related to reproducibility and replicability and to offer recommendations for improving rigor and transparency in scientific research. Reproducibility and Replicability in Science defines reproducibility and replicability and examines the factors that may lead to non-reproducibility and non-replicability in research. Unlike the typical expectation of reproducibility between two computations, expectations about replicability are more nuanced, and in some cases a lack of replicability can aid the process of scientific discovery. This report provides recommendations to researchers, academic institutions, journals, and funders on steps they can take to improve reproducibility and replicability in science.