Download Ebook The Language of Physics: The Calculus and the Development of Theoretical Physics in Europe, 1750-1914, by Elizabeth Garber
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The Language of Physics: The Calculus and the Development of Theoretical Physics in Europe, 1750-1914, by Elizabeth Garber
Download Ebook The Language of Physics: The Calculus and the Development of Theoretical Physics in Europe, 1750-1914, by Elizabeth Garber
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This work is the first explicit examination of the key role that mathematics has played in the development of theoretical physics and will undoubtedly challenge the more conventional accounts of its historical development. Although mathematics has long been regarded as the "language" of physics, the connections between these independent disciplines have been far more complex and intimate than previous narratives have shown. The author convincingly demonstrates that practices, methods, and language shaped the development of the field, and are a key to understanding the mergence of the modern academic discipline. Mathematicians and physicists, as well as historians of both disciplines, will find this provocative work of great interest.
- Sales Rank: #1691184 in Books
- Brand: Brand: Birkhäuser
- Published on: 1998-12-01
- Original language: English
- Number of items: 1
- Dimensions: 9.21" h x .94" w x 6.14" l, 1.68 pounds
- Binding: Hardcover
- 399 pages
- Used Book in Good Condition
Review
"Garber discusses an interesting part of scientific development, using examples of theoretical physics and their historical steps."
---Mathematical Reviews
"Garber argues her case convincingly... A very valuable addition to the existing literature on the history of modern physics. The book is also well written... Those who make an effort to follow the argument will gain many new insights and obtain a fresh outlook at the mathematization of physics in the 18th and 19th centuries."
---Physics World
From the Back Cover
This work is the first explicit examination of the key role that mathematics has played in the development of theoretical physics and will undoubtedly challenge the more conventional accounts of its historical development. Although mathematics has long been regarded as the "language" of physics, the connections between these independent disciplines have been far more complex and intimate than previous narratives have shown.
This study encompasses engagements across discipline boundaries and many nations rom the ear of Euler and Bernoulli o that of Hilbert and Einstein. At all times physicists and mathematicians retained their distinct sets of disciplinary standards and goals. Interactions within historical ears are handled using the standards of the time to define mathematics and physics. In this context, the works of Lagrange, Laplace, Fourier, Jacobi, William Thomson, Maxwell, Helmholtz, and many others are discussed, and by 1870, it is evident that the essentials of modern theoretical physics are in place. The epilogue, spanning the decades from 1870 to the First World War, deals with the decline of these interactions and the building of new connections. It is particularly significant that these new patterns of interactions became paradigmatic for the rest of the twentieth century.
The unique perspectives concerning the history of theoretical physics will undoubtedly cause some raised eyebrows, as the author convincingly demonstrates that practices, methods, and language shaped the development of the field, and are a key to understanding the mergence of the modern academic discipline. Mathematicians and physicists, as well as historians of both disciplines, will find this provocative work of great interest.
Most helpful customer reviews
5 of 5 people found the following review helpful.
Anachronisms Corrected
By Michael Meo
For the first time Garber makes sense out of the threads which came together at the end of the nineteenth century to create modern theoretical physics.
Beginning in the late eighteenth century, scientists working on the development of differential and integral calculus showed how a group of bodies possessed invariant qualities such as kinetic energy, action, and potential energy.
Until Gerber's work, these scientists -- Bernoulli, Mayer, Lagrange, Laplace, Poisson, and Jacobi, among others -- were celebrated as doing great work in physics.
Their work did have consequences for physics, and implied quite a bit from the point of view of mathematical treatment of physical phenomena, but their intention had been to develop the boundaries of mathematics, specifically the differential equations of calculus.
Using detailed examples from not only mechanics but electromagnetism and thermodynamics as well, Garber revises the old-fashioned view of the development of theoretical physics, and proves how the work of a large number of her colleagues in the history of 18th- and 19th-century mathematics and physics supports her interpretation.
A major step forward in the history of science.
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