In October 1943 a small group of Mongolian pilgrims set off westward from Inner Mongolia. Before them lay a confused battleground where the Japanese and rival armies of Chinese and Mongolians fought over the fate of Central Asia. Among the pilgrims was a young monk named Dawa Sangpo beginning what was probably the greatest travel adventure undertaken by anyone of his nationality in this century; for he was not Mongolian at all, but an enterprising Japanese named Hisao Kimura.
In October 1943 a small group of Mongolian pilgrims set off westward from Inner Mongolia. Before them lay a confused battleground where the Japanese and rival armies of Chinese and Mongolians fought over the fate of Central Asia. Among the pilgrims was a young monk named Dawa Sangpo beginning what was probably the greatest travel adventure undertaken by anyone of his nationality in this century; for he was not Mongolian at all, but an enterprising Japanese named Hisao Kimura.
Hydrogen Gas Embrittlement: Mechanisms, Mechanics, and Design enables readers to understand complicated hydrogen-material interactions and conduct better material selection and strength design for hydrogen components. The book reviews the fundamental mechanisms of hydrogen embrittlement, the various behaviors of hydrogen in metallic materials such as diffusion, solution, and trapping, and emphasizes the necessary properties for effective strength design of various materials under the influence of hydrogen, including tensile properties, fatigue life, fatigue limit, fatigue crack-growth, and fracture toughness. Sections provide experimental data obtained in hydrogen gas at various pressures and temperatures together with the fractographic observations, including practical interpretation of hydrogen compatibility of materials based on tensile, fatigue and fracture mechanics testing results. Material testing machines and methods, the effects of hydrogen on various BCC steels, austenitic steels, and non-ferrous metals, and practical applications and methods of strength design for hydrogen vessels and components are all included as well. - Enables a better understanding of hydrogen-material interactions, allowing for better material selection and strength design - Provides insights on the hydrogen-induced degradation of materials strength at the atomic, macroscale and microscale - Looks at a number of degradative behaviors in a variety of materials, including BCC steels, austenitic steels and non-ferrous metals - Includes verification tests, case studies, applications and experimental data
The lexicon of Japanese contains a large number of conventional mimetic words which vividly depict sounds, manners of action, states of mind etc. These words are notable for their distinctive syntactic properties, for the strikingly patterned way in which they exploit sound-symbolic correspondences, and for the copiousness of their use in conversation as well as in many written registers of Japanese. This dictionary is a comprehensive resource for linguists, language teachers, translators, and others who require detailed information about this important sector of the Japanese vocabulary. Examples created by the editors are accompanied by thousands of contextualized, referenced examples from published sources to illustrate the alternative meanings of each mimetic form. All examples appear in Japanese orthography, in romanization, and in English translation. Concise information is provided concerning the varieties of syntactic usage appropriate for each mimetic. An extensive English index facilitates comparison of English and Japanese vocabulary.
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