Constructive Evolution


Book Description

This book represents an attempt to understand the evolution of Jean Piaget's basic ideas in the context of his own intellectual development. Piaget sought to elucidate human knowledge by studying its origins and development. In this book, Michael Chapman applies the same method to Piaget's own thinking. Dr Chapman shows that some of the Swiss psychologist's essential ideas originated in adolescent philosophical speculations about the relation between science and value. These same ideas were then developed step by step in Piaget's investigations of children's cognitive development. Dr Chapman claims that Piaget's use of developmental psychology as a means for addressing questions about the evolution of knowledge has been misunderstood by psychologists approaching his work exclusively from the perspectives of their own discipline. Reconstructing Piaget's intellectual biography makes possible a better understanding of the questions he originally posed and the answers he subsequently provided. Dr Chapman concludes with an assessment of Piaget's relevance for contemporary psychology and philosophy and suggests ways in which Piagetian theory might be further developed.




Organisms, Genes and Evolution


Book Description

Aus dem Inhalt: Peter Janich: Where does biology get its objects from? Mathias Gutmann: The status of organism: Towards a constructivist theory of organism Walter Bock: Explanations in a historical science Christine Hertler: Organism and morphology: Methodological differences between functional and constructional morphology Dominique G. Homberger: Similarities and differences: The distinctive approaches of systematics and comparative anatomy towards homology and analogy Raphael Falk: The organism as a necessary entity of evolution Franz M. Wuketits: The organism's place in evolution: Darwin's views and contemporary organismic theories Christian Kummer: The development of organismic structure and the philosophy behind Guiseppe Sermonti: The butterfly and the lion Harald Riedl: Organism - Ecosystem - Biosphere: Some comments on the organismic concept Sievert Lorenzen: How to advance from the theory of natural selection towards the General Theory of Self-Organization Antonio Lima-de-Faria: The evolutionary periodicity of flight Hans-Rainer Duncker: The evolution of avian ontogenies: Determination of molecular evolution by integrated complex functional systems and ecological conditions Winfried Stefan Peters & Bernd Herkner: An outline of a theory of the constructional constraints governing early organismic evolution Werner E. G. Mueller e.a.: Monophyly of Metazoa: Phylogenetic analyses of genes encoding SerThr-kinases and a receptor Tyr-kinase from Porifera [sponges] Karl Edlinger: The evolution of the mollusc construction: Living organisms as energy-transforming systems Michael Gudo: A structural-functional approach to the soft bodies of rugose corals.




Differential Evolution


Book Description

Differential evolution is a very simple but very powerful stochastic optimizer. Since its inception, it has proved very efficient and robust in function optimization and has been applied to solve problems in many scientific and engineering fields. In Differential Evolution , Dr. Qing begins with an overview of optimization, followed by a state-of-the-art review of differential evolution, including its fundamentals and up-to-date advances. He goes on to explore the relationship between differential evolution strategies, intrinsic control parameters, non-intrinsic control parameters, and problem features through a parametric study. Findings and recommendations on the selection of strategies and intrinsic control parameter values are presented. Lastly, after an introductory review of reported applications in electrical and electronic engineering fields, different research groups demonstrate how the methods can be applied to such areas as: multicast routing, multisite mapping in grid environments, antenna arrays, analog electric circuit sizing, electricity markets, stochastic tracking in video sequences, and color quantization. Contains a systematic and comprehensive overview of differential evolution Reviews the latest differential evolution research Describes a comprehensive parametric study conducted over a large test bed Shows how methods can be practically applied to mobile communications grid computing circuits image processing power engineering Sample applications demonstrated by research groups in the United Kingdom, Australia, Italy, Turkey, China, and Eastern Europe Provides access to companion website with code examples for download Differential Evolution is ideal for application engineers, who can use the methods described to solve specific engineering problems. It is also a valuable reference for post-graduates and researchers working in evolutionary computation, design optimization and artificial intelligence. Researchers in the optimization field or engineers and managers involved in operations research will also find the book a helpful introduction to the topic.







Piaget's Conception of Evolution


Book Description

The first full-length study of Jean Piaget as a philosopher and evolutionist. Messerly traces Piaget's earliest conjectures about knowledge through its further developments to its mature formulation as 'genetic epistemology.' Messerly analyzes Piaget's constructivist theory of the evolution of human knowledge as continuous with, yet partially transcending, the biological process of adaptation to the environment. Messerly's study serves as an invitation to further explorations with Paiget's theory and will interest philosophers, biologists, and psychologists.




Energetic Characterization of Building Evolution


Book Description

This book analyses the evolution of the construction systems and the required materials in Ecuador from 1980 to 2020, from different perspectives including environmental, economic, thermal behaviour, modulation design, and integrity of construction. It focuses on the relationship between energy and the evolution of construction in the Andean region of Ecuador. The theoretical framework of the book shows the extent of quantitative data collected from several sources and experimental data from studies carried out in local buildings. It gives a heritage-environmental perspective of building materials from Cuenca city, which has received the nomination of Cultural Heritage of Humanity. This book will help construction industry professionals, architects, and designers to make sustainable decisions for future construction, focused on different components of a building. Readers can extract a set of guidelines aimed at solving thermal, environmental, aesthetic, and even heritage issues of the construction sector of this region, from the specific perspective of building materials.







New Perspectives on Human Development


Book Description

This book address fundamental questions of human development, revisiting old questions and applying original empirical findings.




Extending the Evolutionary Synthesis


Book Description

The theory of evolution is itself evolving with new findings and changes in the fundamental underlying concepts. It is true that today's synthetic theory, which goes back to Darwin, is persistently successful. However, it offers no convincing explanation to many questions, some examples of which are as follows: What forms of inheritance exist besides genetics; how complex variations, especially evolutionary innovations such as bird feathers and turtle shells, arise; how the environment affects the evolution of species and is changed by them simultaneously; and why the evolution of birds, corals, and human culture is not explainable by natural selection alone. Scientific findings of the last decades require continuous rethinking and integration of new data and concepts into the theory of evolution. This comprehensibly written and excellently researched book provides exciting new insights into the Extended Evolutionary Synthesis using fascinating new examples from evolutionary biology. Key Features Comprehensively explains the Extended Evolutionary Synthesis Understandably written for a broad audience Includes interviews with world-leading evolutionary biologists Reviews the historical development of evolutionary theory with explanations of open, unanswered questions Explains the new concepts with powerful illustrations Related Titles Bard, J. Evolution: The Origins and Mechanisms of Diversity (ISBN 9781032138480) Johnson, N. Darwin’s Reach: 21st Century Applications of Evolutionary Biology (ISBN 9781138587427)




Symbiosis: Cellular, Molecular, Medical and Evolutionary Aspects


Book Description

This volume presents a comprehensive overview of the latest developments in symbiosis research. It covers molecular, organellar, cellular, immunologic, genetic and evolutionary aspects of symbiotic interactions in humans and other model systems. The book also highlights new approaches to interdisciplinary research and therapeutic applications. Symbiosis refers to any mutually beneficial interaction between different organisms. The symbiotic origin of cellular organelles and the exchange of genetic material between hosts and their bacterial and viral symbionts have helped shaped the current diversity of life. Recently, symbiosis has gained a new level of recognition, due to the realization that all organisms function as a holobiome and that any kind of interference with the hosts influences their symbionts and vice versa, and can have profound consequences for the survival of both. For example, in humans, the microbiome, i.e., the entirety of all the microorganisms living in association with the intestines, oral cavity, urogenital system and skin, is partially inherited during pregnancy and influences the maturation and functioning of the human immune system, protects against pathogens and regulates metabolism. Symbionts also regulate cancer development, wound healing, tissue regeneration and stem cell function. The medical applications of this new realization are vast and largely uncharted. The composition and robustness of human symbionts could make them a valuable diagnostic tool for predicting impending diseases, and the manipulation of symbionts could yield new strategies for the treatment of incurable diseases.