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Gravitation is a widely adopted textbook on Albert Einstein's general theory of relativity, written by Charles W. Misner, Kip S. Thorne, and John Archibald Wheeler. It was originally published by W. H. Freeman and Company in 1973 and reprinted by Princeton University Press in 2017.
In physics, gravity (from Latin gravitas 'weight' [1]) is a fundamental interaction primarily observed as mutual attraction between all things that have mass.Gravity is, by far, the weakest of the four fundamental interactions, approximately 10 38 times weaker than the strong interaction, 10 36 times weaker than the electromagnetic force and 10 29 times weaker than the weak interaction.
The cover of the first volume of Gravitation as published by Gentosha in March 1996 in Japan. The chapters of Gravitation are written and illustrated by Maki Murakami. Tokyopop licensed the series for an English-language release in North America and published the twelve volumes from August 5, 2003, to July 12, 2005.
Mechanical explanations of gravitation (or kinetic theories of gravitation) are attempts to explain the action of gravity by aid of basic mechanical processes, such as pressure forces caused by pushes, without the use of any action at a distance. These theories were developed from the 16th until the 19th century in connection with the aether.
This book was translated to Latin and was a reference for European medieval scholars. [4] One writer that rejected this astrological reading was Robert Grosseteste who wrote On the Ebb and Flow of the Sea ( Latin : Questio de fluxu et refluxu maris ), written around 1227, in which he insisted that light from the Moon rarefied the air producing ...
A common misconception occurs between centre of mass and centre of gravity.They are defined in similar ways but are not exactly the same quantity. Centre of mass is the mathematical description of placing all the mass in the region considered to one position, centre of gravity is a real physical quantity, the point of a body where the gravitational force acts.
English mathematician Isaac Newton used Descartes' argument that curvilinear motion constrains inertia, [90] and in 1675, argued that aether streams attract all bodies to one another. [ j ] Newton (1717) and Leonhard Euler (1760) proposed a model in which the aether loses density near mass, leading to a net force acting on bodies.
The Watt–Misner theory (1999) is a recent example of a scalar theory of gravitation. It is not intended as a viable theory of gravitation (since, as Watt and Misner point out, it is not consistent with observation), but as a toy theory which can be useful in testing numerical relativity schemes. It also has pedagogical value. [10]
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