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.
Prior to the 1970's a substantial literature had accumulated on the theory of optimal design, particularly of optimal linear regression design. To a certain extent the study of the subject had been...
"This is an engaging and informative book on the modern practice of experimental design. The authors' writing style is entertaining, the consulting dialogs are extremely enjoyable, and the technical...
Preface; T.P.Hughes Introduction: Devices, Designs and the History of Technology in Medicine; C.Timmermann & J.Anderson PART 1: TECHNICAL INNOVATION AND THE EMERGING ECONOMIES OF MODERN MEDICINE...
A comprehensive and rigorous introduction to thermal system designfrom a contemporary perspectiveThermal Design and Optimization offers readers a lucid introductionto the latest methodologies for the...