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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
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Published by Princeton University Press, 2004
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Published by Princeton University Press, 2004
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
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Published by Princeton University Press, 2004
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ISBN 10: 0691094802ISBN 13: 9780691094809
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Condition: New. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Num Pages: 232 pages, 20 line illus. BIC Classification: PHD; PHVB. Category: (P) Professional & Vocational; (U) Tertiary Education (US: College). Dimension: 247 x 159 x 21. Weight in Grams: 474. . 2004. Hardcover. . . . .
Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Hardback. Condition: New. New copy - Usually dispatched within 4 working days. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynamical astronomy.
Published by Princeton University Press 2004-02-24, Princeton, N.J. |Oxford, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
Seller: Blackwell's, London, United Kingdom
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Condition: New. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Num Pages: 232 pages, 20 line illus. BIC Classification: PHD; PHVB. Category: (P) Professional & Vocational; (U) Tertiary Education (US: College). Dimension: 247 x 159 x 21. Weight in Grams: 474. . 2004. Hardcover. . . . . Books ship from the US and Ireland.
Published by Princeton Univ Pr, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynami.
Published by Princeton University Press, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
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Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This book describes a revolutionary new approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive (or chaotic). It also represents an ideal introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Bringing together wide-ranging research by others with his own original work, much of it new or previously unpublished, Edward Belbruno argues that regions supporting chaotic motions, termed weak stability boundaries, can be estimated. Although controversial until quite recently, this method was in fact first applied in 1991, when Belbruno used a new route developed from this theory to get a stray Japanese satellite back on course to the moon. This application provided a major verification of his theory, representing the first application of chaos to space travel.Since that time, the theory has been used in other space missions, and NASA is implementing new applications under Belbruno's direction. The use of invariant manifolds to find low energy orbits is another method here addressed. Recent work on estimating weak stability boundaries and related regions has also given mathematical insight into chaotic motion in the three-body problem. Belbruno further considers different capture and escape mechanisms, and resonance transitions.Providing a rigorous theoretical framework that incorporates both recent developments such as Aubrey-Mather theory and established fundamentals like Kolmogorov-Arnold-Moser theory, this book represents an indispensable resource for graduate students and researchers in the disciplines concerned as well as practitioners in fields such as aerospace engineering.
Published by Princeton University Press, New Jersey, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
Seller: CitiRetail, Stevenage, United Kingdom
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Hardcover. Condition: new. Hardcover. This book describes a revolutionary new approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive (or chaotic). It also represents an ideal introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Bringing together wide-ranging research by others with his own original work, much of it new or previously unpublished, Edward Belbruno argues that regions supporting chaotic motions, termed weak stability boundaries, can be estimated. Although controversial until quite recently, this method was in fact first applied in 1991, when Belbruno used a new route developed from this theory to get a stray Japanese satellite back on course to the moon. This application provided a major verification of his theory, representing the first application of chaos to space travel. Since that time, the theory has been used in other space missions, and NASA is implementing new applications under Belbruno's direction. The use of invariant manifolds to find low energy orbits is another method here addressed.Recent work on estimating weak stability boundaries and related regions has also given mathematical insight into chaotic motion in the three-body problem. Belbruno further considers different capture and escape mechanisms, and resonance transitions. Providing a rigorous theoretical framework that incorporates both recent developments such as Aubrey-Mather theory and established fundamentals like Kolmogorov-Arnold-Moser theory, this book represents an indispensable resource for graduate students and researchers in the disciplines concerned as well as practitioners in fields such as aerospace engineering. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Published by Princeton University Press, New Jersey, 2004
ISBN 10: 0691094802ISBN 13: 9780691094809
Seller: AussieBookSeller, Truganina, VIC, Australia
Book
Hardcover. Condition: new. Hardcover. This book describes a revolutionary new approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive (or chaotic). It also represents an ideal introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Bringing together wide-ranging research by others with his own original work, much of it new or previously unpublished, Edward Belbruno argues that regions supporting chaotic motions, termed weak stability boundaries, can be estimated. Although controversial until quite recently, this method was in fact first applied in 1991, when Belbruno used a new route developed from this theory to get a stray Japanese satellite back on course to the moon. This application provided a major verification of his theory, representing the first application of chaos to space travel. Since that time, the theory has been used in other space missions, and NASA is implementing new applications under Belbruno's direction. The use of invariant manifolds to find low energy orbits is another method here addressed.Recent work on estimating weak stability boundaries and related regions has also given mathematical insight into chaotic motion in the three-body problem. Belbruno further considers different capture and escape mechanisms, and resonance transitions. Providing a rigorous theoretical framework that incorporates both recent developments such as Aubrey-Mather theory and established fundamentals like Kolmogorov-Arnold-Moser theory, this book represents an indispensable resource for graduate students and researchers in the disciplines concerned as well as practitioners in fields such as aerospace engineering. Describes a revolutionary approach to determining low energy routes for spacecraft and comets by exploiting regions in space where motion is very sensitive. This work also represents an introductory text to celestial mechanics, dynamical systems, and dynamical astronomy. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.