In The Grip Of The Distant Universe The Science Of Inertia

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In The Grip Of The Distant Universe: The Science Of Inertia

This is a book about the history of the science of inertia. Nobody denies the existence of the forces of inertia, but they are branded as “fictitious” because they do not fit smoothly into modern physics. Named by Kepler and given mathematical form by Newton, the force of inertia remains aloof because it has no obvious local cause. At the end of the 19th century, Ernst Mach bravely claimed that the inertia of an object was the result of its instantaneous interaction with all matter in the universe.Many other well-known physicists, including Aristotle, Galileo, Descartes and Einstein, are shown to have tackled this difficult subject. The book also concentrates on inertia research in the 20th century, taking place under the shadow of general relativity, which is seen as uncomfortable with Mach's principle. A Newtonian paradigm, based on action-at-a-distance forces, is discussed throughout the book, allowing the revival of Mach's principle as the only coherent explanation of the inertia forces which play such an important role in the laboratory and in the cosmos.
Ten Equations to Explain the Mysteries of Modern Astrophysics

This book introduces ten equations that transcend the boundaries of time and space. It takes readers through a journey of self-discovery where they will learn the history, science, and significance of these equations in the context of their lives. Moreover, the mathematical beauty of these equations is presented in a profoundly modest fashion to highlight the idea that equations are eternal but humans are transient. Each chapter offers readers a sublime experience and provides insights into the laws of nature that address the ever-expanding intricacy of our universe. The history of humankind, according to Franz Kafka, is the instant between two strides taken by a traveler. Therefore, what remains eternal when we finish our journey on this tiny rocky planet is our deep desire to connect with everything else in this universe. These equations capture the essence of that aspiration and remain everlasting while we continue our trivial human pursuits. These equations change the way we live and view the world and will outlast even the most enduring signs of our civilization. They have the potential to take us from planet to planet and perhaps to make us a cosmic species. They can destroy the last strand of DNA to terminate life as we know it and generate life again from the fundamental laws of nature. While these equations remain intangible, they can create a tangible world yet remain truly eternal.
Styles of Mathematization: The Case of 18th Century Electrostatics

Author: Lucas Marcelo Cavalari Nardi
language: en
Publisher: Springer Nature
Release Date: 2025-08-16
This book studies the mathematization of physics, with a special emphasis on 18th century electrostatics as a case study. The mathematization of a scientific field is a fruitful yet underdeveloped topic that can be seen through different lenses. A noticeable one is the Inferential Conception proposed by Mark Colyvan and Otávio Bueno. In this regard, the use of mathematics is understood as a set of mappings relating the physical realm and the mathematical realm. However, the historical process related to the use of mathematics remains unsolved; philosophical frameworks usually have a hard time dealing with historical dimensionality. Therefore, this book provides a study of the historical process of mathematization going beyond the framework in order to explain the use of mathematics a-historically, using the aforementioned investigation of 18th century electrostatics. The research developed gravitates around two centers; the history of physics and the philosophy of science, making the book of equal importance to both historians and philosophers of science.