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Simple answers to children's questions about the moon. What is it made of? What does it do? What keeps it up in the sky? Do other planets have a moon? What are rings?
Scientists have collected a wealth of physical and chemical data for the Sun, planets, and small bodies in our solar system, but until now this information has been scattered throughout the technical literature. The Planetary Scientist's Companion solves this problem, providing for the first time a single, extensive reference for the interdisciplinary fields of planetary science and cosmochemistry. The book begins with a summary of frequently used physical and chemical constants, unit conversion factors, properties of some compounds and minerals, thermodynamic data, partition coefficients, and useful formulas. This is followed by an overview of the solar system, including comparative data for the planets and their satellites and abundances of the elements. Much of the book is devoted to a series of chapters describing in turn the Sun, each of the planets, and the groups of small bodies (asteroids, comets, meteorites, and Kuiper Belt and Centaur objects). Each chapter includes an introduction, followed by tables of physical and chemical properties compiled from many sources, including data on planetary atmospheres, surfaces, and interiors. The book concludes with data on nearby stars, the interstellar medium, and recently discovered brown dwarfs and possible extrasolar planets, followed by a glossary. A unique and practical resource for anyone interested in contemporary planetary science and cosmochemistry, this volume is likely to be an essential tool in future research.
EXPLORE THE UNIVERSE IN DR. SEUSS-STYLE RHYME Ladies and gents, listen up if you please! Let's hop in a rocket and zoom past the trees. We'll check out the Moon and black holes; we adore 'em! Of course, we'll find planets and stars and explore 'em Determine just how old our Universe is. And please, don't you worry. There won't be a quiz! Astronomer Sean Raymond wraps space facts in poetry, explaining complex topics in playful prose. Drawings by Owen Raymond illustrate how our Universe works, from the phases of the Moon to "spaghettification." Eleven astronomical poems cover topics ranging from telescopes to black holes, from galaxies to the search for extra-terrestrial life, from the Big Bang to the planets. PRAISE FOR BLACK HOLES, STARS, EARTH AND MARS This book (with its wacky poems and Dr. Seuss-like rhymes) appeals both to adults' inner child, and to the curious natural scientist in all our children. The illustrations by a 12-year old artist convey a reassuring sense of "I got this!" -- Jill Tarter, Astronomer and pioneer of SETI (the Search for Extra-Terrestrial Intelligence) This delightful book is a gentle reminder of the better things in life, and science. With echoes of Dr Seuss and the skilled crafting of Edward Lear, Raymond and Raymond create a world well worth losing yourself in, all the while telling a story about the frontiers of our understanding of the universe. An absolute pleasure. -- Caleb Scharf, Director of Astrobiology at Columbia University and author of The Copernicus Complex Cutting edge concepts dished out in poetry you'll want to be reading in striped pyjamas, Raymond presents clear explanations of the biggest concepts in astronomy today in a form guaranteed to intrigue and delight both scientists and artists of all ages. -- Elizabeth Tasker, Astrophysicist, science communicator, and author of The Planet Factory Black Holes, Stars, Earth and Mars is like an Astronomy 101 textbook wrapped up in delightful Dr. Seuss style poetry. It's remarkably comprehensive and covers serious physics, but the easy rhymes make it simple to understand. I'd recommend it for kids learning about space, but also for any astronomy enthusiast! -- Gillian Rhodes, Astronomy/Art Fusion Show Host and Dancer/Choreographer
T. Plotner, The Night Sky Companion, DOI 10. 1007/978-0-387-79509-6_1, 1 Springer ScienceþBusiness Media, LLC 2009 2 TheNightSkyCompanion Welcome,fellowtravelertothestars!Forthenextyearwewilltakeajourneytogetheracrossthenight sky. In these pages you will find lunar features, planets, meteor showers, single and multiple stars, open and globular clusters, as well as distant galaxies. There will be astronomy history to explore, famous astronomers to meet, and science to learn. You’ll find things here for those who enjoy stargazing with just their eyes, binoculars, or even the largest of telescopes! Although these observing tips are designed with all readers in mind, not everyone lives in the same time zone—or the same hemisphere—and certainly no one has clear skies every night. But no matter where you live, or who you are, it is my hope that somewhere here you find something of interest to keep you looking up! LearningtheNightSky If you are new to astronomy, it might seem difficult to learn all those stars. Relax! It’s much easier than you think. Just like moving to a new city, everything will seem unfamiliar at first, but with a little help from some maps, you’ll soon be finding your way around like a pro. Once you become familiar with the constellations and how they appear to move across the night sky, the rest is easy. If you do not have maps of your own, try visiting your local library or one of many online sites thatcangeneratethem. Theygiveobjectpositionsingreatdetail,andmosthaveakeyofGreekletters to help you understand star hop instructions.
Four modules explore topics in physical science, earth and space science, life science, and science and technology with hands-on activities designed to engage students in the processes of scientific inquiry and technological design. Modules within a developmental level may be taught in any sequence.
Planetary rings are among the most intriguing structures of our solar system and have fascinated generations of astronomers. Collating emerging knowledge in the field, this volume reviews our current understanding of ring systems with reference to the rings of Saturn, Uranus, Neptune, and more. Written by leading experts, the history of ring research and the basics of ring–particle orbits is followed by a review of the known planetary ring systems. All aspects of ring system science are described in detail, including specific dynamical processes, types of structures, thermal properties and their origins, and investigations using computer simulations and laboratory experiments. The concluding chapters discuss the prospects of future missions to planetary rings, the ways in which ring science informs and is informed by the study of other astrophysical disks, and a perspective on the field's future. Researchers of all levels will benefit from this thorough and engaging presentation.
In recent years, planetary science has seen a tremendous growth in new knowledge. Deposits of water ice exist at the Moon's poles. Discoveries on the surface of Mars point to an early warm wet climate, and perhaps conditions under which life could have emerged. Liquid methane rain falls on Saturn's moon Titan, creating rivers, lakes, and geologic landscapes with uncanny resemblances to Earth's. Vision and Voyages for Planetary Science in the Decade 2013-2022 surveys the current state of knowledge of the solar system and recommends a suite of planetary science flagship missions for the decade 2013-2022 that could provide a steady stream of important new discoveries about the solar system. Research priorities defined in the report were selected through a rigorous review that included input from five expert panels. NASA's highest priority large mission should be the Mars Astrobiology Explorer Cacher (MAX-C), a mission to Mars that could help determine whether the planet ever supported life and could also help answer questions about its geologic and climatic history. Other projects should include a mission to Jupiter's icy moon Europa and its subsurface ocean, and the Uranus Orbiter and Probe mission to investigate that planet's interior structure, atmosphere, and composition. For medium-size missions, Vision and Voyages for Planetary Science in the Decade 2013-2022 recommends that NASA select two new missions to be included in its New Frontiers program, which explores the solar system with frequent, mid-size spacecraft missions. If NASA cannot stay within budget for any of these proposed flagship projects, it should focus on smaller, less expensive missions first. Vision and Voyages for Planetary Science in the Decade 2013-2022 suggests that the National Science Foundation expand its funding for existing laboratories and establish new facilities as needed. It also recommends that the program enlist the participation of international partners. This report is a vital resource for government agencies supporting space science, the planetary science community, and the public.