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A major statement of the language, method, and concepts of the physical sciences, this volume traces the history of experimental investigation and the efforts of philosophic minds to state and organize their findings. A classic in the philosophy of science, it introduced the concept of a general methodology underlying all science.
Written for statisticians, computer scientists, geographers, research and applied scientists, and others interested in visualizing data, this book presents a unique foundation for producing almost every quantitative graphic found in scientific journals, newspapers, statistical packages, and data visualization systems. It was designed for a distributed computing environment, with special attention given to conserving computer code and system resources. While the tangible result of this work is a Java production graphics library, the text focuses on the deep structures involved in producing quantitative graphics from data. It investigates the rules that underlie pie charts, bar charts, scatterplots, function plots, maps, mosaics, and radar charts. These rules are abstracted from the work of Bertin, Cleveland, Kosslyn, MacEachren, Pinker, Tufte, Tukey, Tobler, and other theorists of quantitative graphics.
Learn how to use R to turn raw data into insight, knowledge, and understanding. This book introduces you to R, RStudio, and the tidyverse, a collection of R packages designed to work together to make data science fast, fluent, and fun. Suitable for readers with no previous programming experience, R for Data Science is designed to get you doing data science as quickly as possible. Authors Hadley Wickham and Garrett Grolemund guide you through the steps of importing, wrangling, exploring, and modeling your data and communicating the results. You'll get a complete, big-picture understanding of the data science cycle, along with basic tools you need to manage the details. Each section of the book is paired with exercises to help you practice what you've learned along the way. You'll learn how to: Wrangle—transform your datasets into a form convenient for analysis Program—learn powerful R tools for solving data problems with greater clarity and ease Explore—examine your data, generate hypotheses, and quickly test them Model—provide a low-dimensional summary that captures true "signals" in your dataset Communicate—learn R Markdown for integrating prose, code, and results
Excerpt from The Grammar of Science If I have not paid greater attention to my numerous critics, it is not that I have failed to study them; it is simply that I have remained - obstinately it may be - convinced that the views expressed are, relatively to our present state of knowledge, substantially correct. Such changes in form as I have made have been chiefly suggested by further experience in the difficulties which await both pupil and teacher. I can only conclude by expressing a hope that if old friends meet the Grammar in its new form, they will not be displeased by either the superficial changes or the more substantial additions. About the Publisher Forgotten Books publishes hundreds of thousands of rare and classic books. Find more at www.forgottenbooks.com This book is a reproduction of an important historical work. Forgotten Books uses state-of-the-art technology to digitally reconstruct the work, preserving the original format whilst repairing imperfections present in the aged copy. In rare cases, an imperfection in the original, such as a blemish or missing page, may be replicated in our edition. We do, however, repair the vast majority of imperfections successfully; any imperfections that remain are intentionally left to preserve the state of such historical works.
Although efforts have been under way for the past two centuries to treat language scientifically, linguists and others who work with language, speech, or communication have not found an adequate scientific foundation in current linguistic theory. Many of the difficulties are caused by longstanding confusions between the logical domain of science and grammar and the physical domain of sound waves and the people who speak and understand. In this book, therefore, the last impediments of tradition, the ancient semiotic-grammatical foundations of linguistics, are set aside. We move into the physical domain, where theories and hypotheses can be tested against observations of the physical reality. Here new foundations are laid that are fully consonant with modern science as practiced in physics, chemistry, and biology. On these foundations is built a structure of testable specific dynamic causal laws of communicative behavior that provides support for treating previously recalcitrant context-dependent semantic, pragmatic, interactive, rhetorical, and literary phenomena. The central role of context in the foundations of the theory provides the insights of scientific lawfulness while still honoring the particularity of situations celebrated in the humanities.
Collects six short illustrated volumes covering topics in mathematics, physics, chemistry, biology, evolution, and astronomy.
This comprehensive and practical book covers the basics of grammar as well as the broad brush issues such as writing a grant application and selling to your potential audience. The clear explanations are expanded and lightened with helpful examples and telling quotes from the giants of good writing. These experienced writers and teachers make scientific writing enjoyable.
NATIONAL BESTSELLER • The renowned theoretical physicist and national bestselling author of The God Equation details the developments in computer technology, artificial intelligence, medicine, space travel, and more, that are poised to happen over the next century. “Mind-bending…. [An] alternately fascinating and frightening book.” —San Francisco Chronicle Space elevators. Internet-enabled contact lenses. Cars that fly by floating on magnetic fields. This is the stuff of science fiction—it’s also daily life in the year 2100. Renowned theoretical physicist Michio Kaku considers how these inventions will affect the world economy, addressing the key questions: Who will have jobs? Which nations will prosper? Kaku interviews three hundred of the world’s top scientists—working in their labs on astonishing prototypes. He also takes into account the rigorous scientific principles that regulate how quickly, how safely, and how far technologies can advance. In Physics of the Future, Kaku forecasts a century of earthshaking advances in technology that could make even the last centuries’ leaps and bounds seem insignificant.
This collection of the writings of Louis Schneider, an exceptionally gifted sociologist of religion the history of ideas, provides a sensitive but rigorous view of the place of ideas in social life. Di­vided according to the principal areas in which Schneider con­ducted research—history of social thought, principles of social the­ory, sociology of religion—are es­says on evolution, styles of re­search, and moral choice in human relations. His knowledge of systems of thought—dialec­tical, functional, and phenomenological—was peerless. The unifying theme in his work is the place of cultural formations in so­cial structures; as a result, his writings are alive with persons no less than systems.