This study addresses itself to the formal (in the topological sense) aspect of literature and literary words, and concludes that if logos (discursive langauge) and mythos (literary language) are indeed contiguous complementary forms, they are then essentially no different from those forms with which the painter or sculptor deals in the formation of his art object.
This work proposes a new approach to literary history that locates the historicity of a literary work of art in the visual image that initiates the work and is fundamental to it, a visual metaphor of which the text is the verbalization.
Samuel Weil Franklin shows that in postwar America, the newfangled term "creativity" was the product of campaigns to harness the power of the individual to the demands of capitalist production and global hegemony. Franklin reveals that the champions of creativity were psychologists, educators, and management consultants who benefited from postwar technological progress yet worried that the resulting society might promote conformity and stifle ingenuity. Against increasingly reified institutions and systems, the "creative individual" took on a wealth of romantic, generative, and democratic associations. Creativity was the motive force behind the postwar individual, the literal spark-and cannon fodder-of progress"--
This book presents both fundamental knowledge and latest achievements of this rapidly growing field in the last decade. It presents a complete and concise picture of the the state-of-the-art in the field, encompassing the most active international research groups in the world. Led by contributions from leading global research groups, the book discusses the functionalization of semiconductor surface. Dry organic reactions in vacuum and wet organic chemistry in solution are two major categories of strategies for functionalization that will be described. The growth of multilayer-molecular architectures on the formed organic monolayers will be documented. The immobilization of biomolecules such as DNA on organic layers chemically attached to semiconductor surfaces will be introduced. The patterning of complex structures of organic layers and metallic nanoclusters toward sensing techniques will be presented as well.
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