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The Japanese Monarchy, 1931-91 - Ambassador Grew and the Making of the "Symbol Emperor System" (Paperback): Masanori Nakamura The Japanese Monarchy, 1931-91 - Ambassador Grew and the Making of the "Symbol Emperor System" (Paperback)
Masanori Nakamura
R934 Discovery Miles 9 340 Ships in 12 - 17 working days

"The Japanese Monarchy, 1931-1991", which created a sensation when first published in Japanese, clarifies US policies toward Japan's symbol emperor system before, during and after World War II. As American ambassador to Japan from 1932 to 1945, Joseph Clark Grew had contacts with groups close to the emperor as well as leading "moderates". Returning to the US after the outbreak of the war, he made many speeches, first condemning Japanese aggression, but later changing his theme from war to peace, even to suggesting that the emperor would be a key asset in stabilising Japanese society after the war, a view which was widely criticised at the time. Later, as under secretary of state, Grew came to play an important role in the formation of postwar US policy on Japan and the emperor. His view that the emperor was a pacifist who opposed and sought to end the war with the US and that thus postwar Japan should be reconstructed with the emperor and the moderates at the centre, was later adopted in the decision of Douglas MacArthur's occupation to preserve the emperor system. That the evolution of an ambassador's convictions could have such a significant impact, even to this day, on postwar US-Japan relations vividly illustrates the importance of truly understanding the history and culture of another country, whether friend or foe.

Computational Biomechanics - Theoretical Background and Biological/Biomedical Problems (Paperback, 2012 ed.): Masao Tanaka,... Computational Biomechanics - Theoretical Background and Biological/Biomedical Problems (Paperback, 2012 ed.)
Masao Tanaka, Shigeo Wada, Masanori Nakamura
R1,537 Discovery Miles 15 370 Ships in 10 - 15 working days

Rapid developments have taken place in biological/biomedical measurement and imaging technologies as well as in computer analysis and information technologies. The increase in data obtained with such technologies invites the reader into a virtual world that represents realistic biological tissue or organ structures in digital form and allows for simulation and what is called "in silico medicine." This volume is the third in a textbook series and covers both the basics of continuum mechanics of biosolids and biofluids and the theoretical core of computational methods for continuum mechanics analyses. Several biomechanics problems are provided for better understanding of computational modeling and analysis. Topics include the mechanics of solid and fluid bodies, fundamental characteristics of biosolids and biofluids, computational methods in biomechanics analysis/simulation, practical problems in orthopedic biomechanics, dental biomechanics, ophthalmic biomechanics, cardiovascular biomechanics, hemodynamics, cell mechanics, and model-, rule-, and image-based methods in computational biomechanics analysis and simulation. The book is an excellent resource for graduate school-level engineering students and young researchers in bioengineering and biomedicine.

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