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This is the fifth volume of the Spirits of the Border Series covering all hauntings and unsolved mysteries in the State of Texas.
Peter Caviness, his sister and two brothers suddenly become orphans and face not only the end of summer, but the end of childhood. Now everything is different -- alien, dreamlike, frightening. What are those strange men doing to the beloved house their father built? The locks are changed. Why is the preacher so fascinated with Mary? She's only a child. And when is Uncle Herbert going to stop sleeping in their parents' bedroom? The answers to these questions, and more, are surprisingly revealed in this novel set in a small city in western Colorado against the historic events of the day -- a poignant story that propels the reader through a psychological journey of childhood as deftly textured as growing up itself. Gripping, funny, sad, and, at times, melancholy, "Sundays in August" will dazzle.
Inorganic membrane science and technology is a new field of membrane separation technology which until recently was dominated by the earlier field of polymer membranes. Currently the subject is undergoing rapid development and innovation.The present book describes the fundamental principles of both synthesis of inorganic membranes and membrane supports and also the associated phenomena of transport and separation in a semi-quantitative form.Features of this book:- Examples are given which illustrate the state-of-the-art in the synthesis of membranes with controlled properties- Future possibilities and limitations are discussed- The reader is provided with references to more extended treatments in the literature- Potential areas for future innovation are indicated.By combining aspects of both the science and technology of inorganic membranes this book serves as a useful source of information for scientists and engineers working in this field. It also provides some observations of important investigators who have contributed to the development of this subject.
Having successfully replaced elements used in traditional, pollution-prone, energy-consuming separation processes, nanoporous materials play an important role in chemical processing. Although their unique structural or surface physicochemical properties can, to an extent, be tailored to meet specific process-related requirements, the task of charac
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