The Diary of Alonzo Typer


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"The Diary of Alonzo Typer" is a blend of gothic horror and haunted house mysteries telling the unusual story of Alonzo Typer's disappearance. His mysterious disappearance leads to a gloomy country house where the diary is found, a diary that might contain a key to this mystery. But the old mention hides more secrets and we learn of them as the mystery unravels.




The Herndons


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A fascinating study of one of the Georgia's most important black families retraces the steps of a former slave who became an extremely wealthy man within the four decades of being freed from bondage.




Publication


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Writing the Pulse


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The sphygmograph was one of the promising instruments of precision that captured the imagination of mid- and late-nineteenth-century physicians eager to plumb the secrets of the circulatory system. Literally a pulse writer, the sphygmograph allowed physicians to study a permanent record (sphygmogram) of the contours and rhythms of the pulse wave. The early masters of the sphygmograph were hopeful that images of the pulse at the wrist could reveal much about the action of the heart and major blood vessels that would prove useful in research and practice. Although the sphygmograph proved to be a frustrating instrument and its pulse recordings confusing, it prepared early twentieth-century physicians to embrace more reliable technologies, such as the sphygmomanometer (blood pressure cuff) and the electrocardiograph. This book traces the European invention, development, and application of the sphygmograph before turning to a detailed study of the novel instruments and clinical investigations of three heretofore unremarked American sphygmograph men and the role of the sphygmograph in American medical practice, most notably in the hands of Dr. Mary Putnam Jacobi. A final chapter examines the pervasive problems of the sphygmograph in the context of recent literature on apparent failures of technology.




Introduction to Mathematical Logic


Book Description

A classic account of mathematical logic from a pioneering giant in the field Logic is sometimes called the foundation of mathematics: the logician studies the kinds of reasoning used in the individual steps of a proof. Alonzo Church was a pioneer in the field of mathematical logic, whose contributions to number theory and the theories of algorithms and computability laid the theoretical foundations of computer science. His first Princeton book, The Calculi of Lambda-Conversion (1941), established an invaluable tool that computer scientists still use today. Even beyond the accomplishment of that book, however, his second Princeton book, Introduction to Mathematical Logic, defined its subject for a generation. Originally published in Princeton's Annals of Mathematics Studies series, this book was revised in 1956 and reprinted a third time, in 1996, in the Princeton Landmarks in Mathematics series. Although new results in mathematical logic have been developed and other textbooks have been published, it remains, sixty years later, a basic source for understanding formal logic. Church was one of the principal founders of the Association for Symbolic Logic; he founded the Journal of Symbolic Logic in 1936 and remained an editor until 1979. At his death in 1995, Church was still regarded as the greatest mathematical logician in the world.




Learning Progressions in Science


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Learning progressions – descriptions of increasingly sophisticated ways of thinking about or understanding a topic (National Research Council, 2007) – represent a promising framework for developing organized curricula and meaningful assessments in science. In addition, well-grounded learning progressions may allow for coherence between cognitive models of how understanding develops in a given domain, classroom instruction, professional development, and classroom and large-scale assessments. Because of the promise that learning progressions hold for bringing organization and structure to often disconnected views of how to teach and assess science, they are rapidly gaining popularity in the science education community. However, there are signi?cant challenges faced by all engaged in this work. In June 2009, science education researchers and practitioners, as well as scientists, psychometricians, and assessment specialists convened to discuss these challenges as part of the Learning Progressions in Science (LeaPS) conference. The LeaPS conference provided a structured forum for considering design decisions entailed in four aspects of work on learning progressions: de?ning learning progressions; developing assessments to elicit student responses relative to learning progressions; modeling and interpreting student performance with respect to a learning progressions; and using learning progressions to in?uence standards, curricula, and teacher education. This book presents speci?c examples of learning progression work and syntheses of ideas from these examples and discussions at the LeaPS conference.




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Athletic Journal


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National Magazine


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