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El. knyga: Observer's Guide to Planetary Motion: Explaining the Cycles of the Night Sky

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To the naked eye, the most evident defining feature of the planets is their motion across the night sky. It was this motion that allowed ancient civilizations to single them out as different from fixed stars. The Observers Guide to Planetary Motion takes each planet and its moons (if it has them) in turn and describes how the geometry of the Solar System gives rise to its observed motions.

Although the motions of the planets may be described as simple elliptical orbits around the Sun, we have to observe them from a particular vantage point: the Earth, which spins daily on its axis and circles around the Sun each year. The motions of the planets as observed relative to this spinning observatory take on more complicated patterns. Periodically, objects become prominent in the night sky for a few weeks or months, while at other times they pass too close to the Sun to be observed. The Observers Guide to Planetary Motion provides accurate tables of the best time for observing each planet, together with other notable events in their orbits, helping amateur astronomers plan when and what to observe. Uniquely each of the chapters includes extensive explanatory text, relating the events listed to the physical geometry of the Solar System.

Along the way, many questions are answered: Why does Mars take over two years between apparitions (the times when it is visible from Earth) in the night sky, while Uranus and Neptune take almost exactly a year? Why do planets appear higher in the night sky when theyre visible in the winter months? Why do Saturns rings appear to open and close every 15 years? This book places seemingly disparate astronomical events into an understandable three-dimensional  structure, enabling an appreciation that, for example, very good apparitions of Mars come around roughly every 15 years and that those in 2018 and 2035 will be nearly as good as that seen in 2003.

Events are listed for the time period2010-2030 and in the case of rarer events (such as eclipses and apparitions of Mars) even longer time periods are covered. A short closing chapter describes the seasonal appearance of deep sky objects, which follow an annual cycle as a result of Earths orbital motion around the Sun.

Recenzijos

From the book reviews:

This concise little primer takes a refreshing pragmatic approach to understanding the motions that any casual observer of the night sky will eventually notice.  The book also contains some very useful tables listing several decades of lunar phases, eclipses, planetary transits, planetary configurations, etc. That alone makes it a reference well worth having long after the basics have been mastered. Summing Up: Highly recommended. All levels/libraries. (T. D. Oswalt, Choice, Vol. 52 (6), February, 2015)

1 Introduction
1(22)
2 The Earth as an Observatory
23(26)
3 The Formation of the Solar System
49(12)
4 Measuring Time
61(16)
5 The Moon
77(38)
6 The Outer Planets
115(40)
7 Mars
155(22)
8 The Inner Planets
177(22)
9 The Deep Sky
199(6)
10 Extrasolar Planets
205(10)
Appendix A Astronomical Imaging 215(14)
Appendix B Sources 229(2)
Glossary 231(6)
Index 237
Dr. Dominic Ford is an experienced observer of the night sky and a regular contributor to the Journal of the British Astronomical Association. He obtained his MSc in Physics from the University of Cambridge (UK) in 2003 and a doctorate in Astrophysics (also from Cambridge) in 2008. He is a member of the Council of the British Astronomical Association, a Fellow of the Royal Astronomical Society and a Trustee of the British Astronomical Association (as of August 2011). Dominic has written 58 meeting reports for The Journal of the British Astronomical Association over the past ten years and is a regular monthly contributor to the Naked Astronomy podcast. Currently he is employed as a post-doctoral Research Associate working on the Square Kilometre Array in the Astrophysics Group, Department of Physics, University of Cambridge.