Heliophysics : evolving solar activity and the climates of space and Earth /

"Heliophysics is a fast-developing scientific discipline that integrates studies of the Sun's variability, the surrounding heliosphere, and the environment and climate of planets. Over the past few centuries, our understanding of how the Sun drives space weather and climate on the Earth an...

Descripción completa

Guardado en:
Detalles Bibliográficos
Otros Autores: Schrijver, Carolus J., Siscoe, George L.
Formato: Libro
Lenguaje:Inglés
Publicado: New York : Cambridge University Press, 2010.
Materias:
Acceso en línea:Cover image
Aporte de:Registro referencial: Solicitar el recurso aquí
LEADER 03099cam#a22003498a#4500
001 BCCAB016921
008 100601s2010####nyua###f#bi###001#0#eng##
005 20101209174408.0
003 AR-BCCAB
245 0 0 |a Heliophysics :  |b evolving solar activity and the climates of space and Earth /  |c edited by Carolus J. Schrijver, George L. Siscoe. 
260 # # |a New York :  |b Cambridge University Press,  |c 2010. 
300 # # |a xiii, 495p. :  |b il. ;  |c 25 cm. 
504 # # |a Incluye referencias bibliográficas (p. 461-487) e índices. 
520 # # |a "Heliophysics is a fast-developing scientific discipline that integrates studies of the Sun's variability, the surrounding heliosphere, and the environment and climate of planets. Over the past few centuries, our understanding of how the Sun drives space weather and climate on the Earth and other planets has advanced at an ever increasing rate. The Sun is a magnetically variable star and, for planets with intrinsic magnetic fields, planets with atmospheres, or planets like Earth with both, thereare profound consequences"--  |c Provided by publisher. 
505 8 # |a Machine generated contents note: Preface; 1. Interconnectedness in heliophysics Carolus J. Schrijver and George L. Siscoe; 2. Long-term evolution of magnetic activity of Sun-like stars Carolus J. Schrijver; 3. Formation and early evolution of stars and proto-planetary disks Lee W. Hartmann; 4. Planetary habitability on astronomical time scales Donald E. Brownlee; 5. Solar internal flows and dynamo action Mark S. Miesch; 6. Modeling solar and stellar dynamos Paul Charbonneau; 7. Planetary fields and dynamos Ulrich R. Christensen; 8. The structure and evolution of the 3D solar wind John T. Gosling; 9. The heliosphere and cosmic rays J. Randy Jokipii; 10. Solar spectral irradiance: measurements and models Judith L. Lean and Thomas N. Woods; 11. Astrophysical influences on planetary climate systems Juerg Beer; 12. Evaluating the drivers of Earth's climate system Thomas J. Crowley; 13. Ionospheres of the terrestrial planets Stanley C. Solomon; 14. Long-term evolution of the geospace climate Jan J. Sojka; 15. Waves and transport processes in atmospheres and oceans Richard L. Walterscheid; 16. Solar variability, climate, and atmospheric photochemistry Guy P. Brasseur, Daniel Marsch and Hauke Schmidt; Appendix I. Authors and editors; List of illustrations; List of tables; Bibliography; Index. 
020 # # |a 9780521112949 (hardback) 
700 1 # |a Schrijver, Carolus J. 
700 1 # |a Siscoe, George L. 
080 # # |a 523.92 
650 # 0 |a Weather  |x Effect of solar activity on. 
650 # 0 |a Solar-terrestrial physics. 
650 # 7 |a Heliosphere.  |2 inist 
650 # 7 |a Solar radiation.  |2 inist 
650 # 7 |a Heliosfera  |2 inist 
650 # 7 |a Radiación solar.  |2 inist 
010 # # |a ##2010022868 
040 # # |a DLC  |b spa  |d arbccab  |c DLC 
050 0 0 |a QB524  |b .H456 2010 
856 4 2 |3 Cover image  |u http://assets.cambridge.org/97805211/12949/cover/9780521112949.jpg 
082 0 0 |a 523.7  |2 22 
942 # # |c BK 
952 # # |2 udc  |a ARBCCAB  |b ARBCCAB  |d 20101210  |e M&A  |g U$S81  |i 21494  |o 523.92 Sch691 E  |p 21494  |t 1  |y BK