science: Advances in Astronomy
Advances in Astronomy
Astronomy progressed on the theoretical level through the contributions to celestial mechanics of P. S. Laplace and others, and on the observational level through the work of many scientists. They included William Herschel, who built telescopes and discovered Uranus (1781), the first planet found in modern times, and his son John Herschel, who extended his father's observations to the Southern Hemisphere skies and pioneered in astrophotography, which in modern astronomy is the chief method of observation. Another tool that found important application in astronomy was the spectroscope. Increasingly astronomers made use of the instruments, techniques, and theories of other fields, particularly physics.
Sections in this article:
- Introduction
- Promise and Problems of Modern Science
- Modern Science and Technology
- Astronomy beyond the Visual Spectrum
- The Abstraction of Mathematics
- Biology Becomes an Interdisciplinary Science
- Advances in Chemistry
- Quantum Theory and the Theory of Relativity
- The Impact of Elementary Particles
- Revolutions in Modern Science
- Science and the Industrial Revolution
- New Ideas in Biology
- Birth of Modern Geology
- Advances in Astronomy
- Innovations in Chemistry
- The Evolution of Mathematics and Physics
- The Age of Classical Science
- The Impact of Sir Isaac Newton
- Improved Communication of Scientific Knowledge
- The Rejection of Traditional Paradigms
- The Scientific Revolution
- The Craft Tradition and Early Empiricism in Europe
- Muslim Preservation of Learning
- Scientific Progress in China and India
- Influence of the Alexandrian Schools
- Early Greek Contributions to Science
- Practical Applications in the Ancient Middle East
- The Beginnings of Science
- Branches of Specialization
- Role of Measurement and Experiment
- The Scientific Method
- Bibliography
The Columbia Electronic Encyclopedia, 6th ed. Copyright © 2024, Columbia University Press. All rights reserved.
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