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Ajouter au panierHardcover. Etat : Very Good. Optimal Device Design This book is in very good condition and will be shipped within 24 hours of ordering. The cover may have some limited signs of wear but the pages are clean, intact and the spine remains undamaged. This book has clearly been well maintained and looked after thus far. Money back guarantee if you are not satisfied. See all our books here, order more than 1 book and get discounted shipping.
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Ajouter au panierHardcover. Etat : Very Good. This book is in very good condition and will be shipped within 24 hours of ordering. The cover may have some limited signs of wear but the pages are clean, intact and the spine remains undamaged. This book has clearly been well maintained and looked after thus far. Money back guarantee if you are not satisfied. See all our books here, order more than 1 book and get discounted shipping.
Edité par Cambridge University Press, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
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Ajouter au panierEtat : New.
Edité par Cambridge University Press, 2010
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Ajouter au panierEtat : New. In.
Edité par Cambridge University Press, Cambridge, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
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Ajouter au panierHardcover. Etat : new. Hardcover. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This cutting-edge work shows how robust, manufacturable designs that meet previously unobtainable system specifications can be created using a combination of modern computer power, adaptive algorithms, and realistic device-physics models. Applying this method to nanoscience is a path to creating new devices with new functionality, and it could be the key design element in making nanoscience a practical technology. Basic introductory examples along with MATLAB code are included, through to more formal and sophisticated approaches, and specific applications and designs are examined. Essential reading for researchers and engineers in electronic devices, nanoscience, materials science, applied mathematics, and applied physics. Explore the frontier of device engineering by applying optimization to nanoscience and device design. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Edité par Cambridge University Press CUP, 2010
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
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Ajouter au panierEtat : New. pp. xi + 282.
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Ajouter au panierHardcover. Etat : Brand New. 1st edition. 282 pages. 9.50x6.75x0.50 inches. In Stock.
Edité par Cambridge University Press, 2010
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
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Ajouter au panierBuch. Etat : Neu. Druck auf Anfrage Neuware - Printed after ordering - Explore the frontier of device engineering by applying optimization to nanoscience and device design.
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Ajouter au panierHardcover. Etat : Brand New. 1st edition. 282 pages. 9.50x6.75x0.50 inches. In Stock. This item is printed on demand.
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Ajouter au panierHardback. Etat : New. This item is printed on demand. New copy - Usually dispatched within 5-9 working days 762.
Edité par Cambridge University Press, Cambridge, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
Langue: anglais
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Ajouter au panierHardcover. Etat : new. Hardcover. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This cutting-edge work shows how robust, manufacturable designs that meet previously unobtainable system specifications can be created using a combination of modern computer power, adaptive algorithms, and realistic device-physics models. Applying this method to nanoscience is a path to creating new devices with new functionality, and it could be the key design element in making nanoscience a practical technology. Basic introductory examples along with MATLAB code are included, through to more formal and sophisticated approaches, and specific applications and designs are examined. Essential reading for researchers and engineers in electronic devices, nanoscience, materials science, applied mathematics, and applied physics. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Edité par Cambridge University Press, 2010
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
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Ajouter au panierEtat : New. Print on Demand pp. xi + 282 Illus.
Edité par Cambridge University Press, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
Langue: anglais
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Ajouter au panierGebunden. Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This cutting-edge work shows how robust, manufacturable designs that meet previously unobtainable system specifications can be created using a combination .
Edité par Cambridge University Press, 2010
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
Langue: anglais
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Ajouter au panierEtat : New. PRINT ON DEMAND pp. xi + 282.
Edité par Cambridge University Press, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
Langue: anglais
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Ajouter au panierBuch. Etat : Neu. Optimal Device Design | A. F. J. Levi (u. a.) | Buch | Gebunden | Englisch | 2009 | Cambridge University Press | EAN 9780521116602 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand.
Edité par Cambridge University Press, Cambridge, 2009
ISBN 10 : 0521116600 ISBN 13 : 9780521116602
Langue: anglais
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EUR 214,36
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Ajouter au panierHardcover. Etat : new. Hardcover. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This cutting-edge work shows how robust, manufacturable designs that meet previously unobtainable system specifications can be created using a combination of modern computer power, adaptive algorithms, and realistic device-physics models. Applying this method to nanoscience is a path to creating new devices with new functionality, and it could be the key design element in making nanoscience a practical technology. Basic introductory examples along with MATLAB code are included, through to more formal and sophisticated approaches, and specific applications and designs are examined. Essential reading for researchers and engineers in electronic devices, nanoscience, materials science, applied mathematics, and applied physics. Explore the frontier of device engineering by applying optimization to nanoscience and device design. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.