The Wonders of Life: A Popular Study of Biological Philosophy


Book Description

The Wonders of Life is a book on the philosophy of biology by the world-famous scientist Ernst Haekel. In this book, Haekel further experiments with applying the philosophy of monism to the science of biology - an effort he started in his book The Riddle of the Universe. Monism teaches that all the existing things have a common origin and are just different aspects of a uniform source. The book regards different unities and forms of life, how life is created and which laws it abides by.




The Wonders of Life


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The Wonders of Life


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Classified Catalogue


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Modernist Life Histories


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Modernist Life Histories explores how new models of embryonic development helped inspire new kinds of coming-of-age plots during the first half of the twentieth century.




She Is Weeping


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A new understanding of the rise, expansion and perpetuation of slavery in the Atlantic World.




The Wonders of Life


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Research Methods in Human Skeletal Biology


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Research Methods in Human Skeletal Biology serves as the one location readers can go to not only learn how to conduct research in general, but how research is specifically conducted within human skeletal biology. It outlines the current types of research being conducted within each sub-specialty of skeletal biology, and gives the reader the tools to set up a research project in skeletal biology. It also suggests several ideas for potential projects. Each chapter has an inclusive bibliography, which can serve as a good jumpstart for project references. Provides a step-by-step guide to conducting research in human skeletal biology Covers diverse topics (sexing, aging, stature and ancestry estimation) and new technologies (histology, medical imaging, and geometric morphometrics) Excellent accompaniment to existing forensic anthropology or osteology works




Mechanical Engineering of the Cytoskeleton in Developmental Biology


Book Description

Developing organisms are systems in which the geometry, dynamics, and boundary conditions are all changing in the course of morphogenesis. The morphogenesis of cells and organisms appear to be mediated in part by the mechanically active components of the cytoskeleton. Mechanical forces have long been considered secondary to the effects of molecular mechanisms in cell growth, differentiation, and development. This volume explores the role of mechanical forces in cell growth and development and demonstrates its importance. This volume will prove invaluable to all biologists interested in the fundamentals of mechanical forces in development, from the advanced to the graduate researcher.