1.

電子ブック

EB
edited by William F. van Altena, Yale University, Connecticut
出版情報: Cambridge : Cambridge University Press, 2012
オンライン: http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=490498
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目次情報:
Machine generated contents note: Part I. Astrometry in the Twenty-First Century: 1. Opportunities and challenges for astrometry in the twenty-first century M. Perryman; 2. Astrometric satellites L. Lindegren; 3. Ground-based opportunities for astrometry N. Zacharias; Part II. Relativistic Foundations of Astrometry and Celestial Mechanics: 4. Vectors in astrometry, an introduction L. Lindegren; 5. Relativistic principles of astrometry and celestial mechanics S. Klioner; 6. Celestial mechanics of the N-body problem S. Klioner; 7. Celestial coordinate systems and positions N. Capitaine and M. Stavinschi; 8. Fundamental algorithms for celestial coordinates and positions P. Wallace; Part III. Observing through the Atmosphere: 9. The Earth's atmosphere: refraction, turbulence, delays and limitations to astrometic precision W. van Altena and E. Fomalont; 10. Astrometry with ground-based diffraction-limited imaging A. Ghez; 11. Optical interferometry A. Glindermann; 12. Radio interferometry E. Fomalont; Part VI. From
Machine generated contents note: Part I. Astrometry in the Twenty-First Century: 1. Opportunities and challenges for astrometry in the twenty-first century M. Perryman; 2. Astrometric satellites L. Lindegren; 3. Ground-based opportunities for astrometry N. Zacharias; Part II. Relativistic Foundations of Astrometry and Celestial Mechanics: 4. Vectors in astrometry, an introduction L. Lindegren; 5. Relativistic principles of astrometry and celestial mechanics S. Klioner; 6. Celestial mechanics of the N-body problem S. Klioner; 7. Celestial coordinate systems and positions N. Capitaine and M. Stavinschi; 8. Fundamental algorithms for celestial coordinates and positions P. Wallace; Part III. Observing through the Atmosphere: 9. The Earth's atmosphere: refraction, turbulence, delays and limitations to astrometic precision W. van Altena and E. Fomalont; 10. Astrometry with ground-based diffraction-limited imaging A. Ghez; 11. Optical interferometry A. Glindermann; 12. Radio interferometry E. Fomalont; Part VI. From
2.

電子ブック

EB
Icko Iben, Jr
出版情報: Cambridge ; New York : Cambridge University Press, <c2012->
オンライン: http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=494716
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目次情報:
Volume 1. Physical processes in stellar interiors
Volume 2. Advanced evolution of single stars
Volume 1. Physical processes in stellar interiors
Volume 2. Advanced evolution of single stars
3.

電子ブック

EB
Malcolm Gray, Jodrell Bank Centre for Astrophysics, the University of Manchester
出版情報: Cambridge : Cambridge University Press, 2012
シリーズ名: Cambridge astrophysics series ; 50
オンライン: http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=443648
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目次情報:
Cover; MASER SOURCES IN ASTROPHYSICS; Series; Title; Copyright; Contents; Preface; Intended readership; Previous works; Major developments since 1992; Acknowledgements; 1 Introduction; 1.1 Masers and lasers; 1.2 Atoms and molecules; 1.3 Electromagnetic radiation; 1.3.1 Response of media; 1.3.2 The wave equation; 1.3.3 Travelling solutions; 1.3.4 Wave modes in a cavity; 1.3.5 Energy density and the Planck law; 1.3.6 Energy density and intensity; 1.4 Light and molecules interacting; 1.4.1 The simplest maser; 1.4.2 Masers and lasers in the laboratory; 1.4.3 Masers in astrophysics
Cover; MASER SOURCES IN ASTROPHYSICS; Series; Title; Copyright; Contents; Preface; Intended readership; Previous works; Major developments since 1992; Acknowledgements; 1 Introduction; 1.1 Masers and lasers; 1.2 Atoms and molecules; 1.3 Electromagnetic radiation; 1.3.1 Response of media; 1.3.2 The wave equation; 1.3.3 Travelling solutions; 1.3.4 Wave modes in a cavity; 1.3.5 Energy density and the Planck law; 1.3.6 Energy density and intensity; 1.4 Light and molecules interacting; 1.4.1 The simplest maser; 1.4.2 Masers and lasers in the laboratory; 1.4.3 Masers in astrophysics