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The theory of integral dynamics is based on the view that the development of individual leaders or entrepreneurs requires the simultaneous development of institutions and societies. It seeks a specific way forward for each society, fundamentally different from, but drawing on, its past. Nearly every natural science has been transformed from an analytically-based approach to a dynamic one: now it is time for society and culture to follow suit locally and globally. Each culture, discipline and person is incomplete and is in need of others in order to develop and evolve. This book sets out a curriculum for a new integral, trans-cultural and trans-disciplinary area of study, inclusive of, but extending beyond, economics and enterprise. It embraces a trans-personal perspective, linking self with community, enterprise and society, and focusing on the vital relationship between local identity and global integrity. For the government policy maker, the enlightened business practitioner, and the student and researcher into economics and enterprise, the new discipline is set out here in complete detail by a multi-national team of Gower's Transformation and Innovation Series authors. Illuminated with examples relating the conceptual to the practical, this is a text, not for a pre-modern, modern, or even post-modern era, but for what has been called our trans-modern age.
The theory of integral dynamics is based on the view that the development of individual leaders or entrepreneurs requires the simultaneous development of institutions and societies. It seeks a specific way forward for each society, fundamentally different from, but drawing on, its past. Nearly every natural science has been transformed from an analytically-based approach to a dynamic one: now it is time for society and culture to follow suit locally and globally. Each culture, discipline and person is incomplete and is in need of others in order to develop and evolve. This book sets out a curriculum for a new integral, trans-cultural and trans-disciplinary area of study, inclusive of, but extending beyond, economics and enterprise. It embraces a trans-personal perspective, linking self with community, enterprise and society, and focusing on the vital relationship between local identity and global integrity. For the government policy maker, the enlightened business practitioner, and the student and researcher into economics and enterprise, the new discipline is set out here in complete detail by a multi-national team of Gower's Transformation and Innovation Series authors. Illuminated with examples relating the conceptual to the practical, this is a text, not for a pre-modern, modern, or even post-modern era, but for what has been called our trans-modern age.
This solid introduction uses the principles of physics and the tools of mathematics to approach fundamental questions of neuroscience.
The Feynman integral is considered as an intuitive representation of quantum mechanics showing the complex quantum phenomena in a language comprehensible at a classical level. It suggests that the quantum transition amplitude arises from classical mechanics by an average over various interfering paths. The classical picture suggested by the Feynman integral may be illusory. By most physicists the path integral is usually treated as a convenient formal mathematical tool for a quick derivation of useful approximations in quantum mechanics. Results obtained in the formalism of Feynman integrals receive a mathematical justification by means of other (usually much harder) methods. In such a case the rigour is achieved at the cost of losing the intuitive classical insight. The aim of this book is to formulate a mathematical theory of the Feynman integral literally in the way it was expressed by Feynman, at the cost of complexifying the configuration space. In such a case the Feynman integral can be expressed by a probability measure. The equations of quantum mechanics can be formulated as equations of random classical mechanics on a complex configuration space. The opportunity of computer simulations shows an immediate advantage of such a formulation. A mathematical formulation of the Feynman integral should not be considered solely as an academic question of mathematical rigour in theoretical physics.
Spiral Dynamics introduces a new model for plotting the enormous economic and commercial shifts that are making contemporary business practice so complex and apparently fragmented. Focusing on cutting-edge leadership, management systems, processes, procedures, and techniques, the authors synthesize changes such as: Increasing cultural diversity. Powerful new social responsibility initiatives. The arrival of a truly global marketplace. This is an inspiring book for managers, consultants, strategists, and leaders planning for success in the business world in the 21st century.
This major textbook provides comprehensive coverage of the analytical tools required to determine the dynamic response of structures. The topics covered include: formulation of the equations of motion for single- as well as multi-degree-of-freedom discrete systems using the principles of both vector mechanics and analytical mechanics; free vibration response; determination of frequencies and mode shapes; forced vibration response to harmonic and general forcing functions; dynamic analysis of continuous systems;and wave propagation analysis. The key assets of the book include comprehensive coverage of both the traditional and state-of-the-art numerical techniques of response analysis, such as the analysis by numerical integration of the equations of motion and analysis through frequency domain. The large number of illustrative examples and exercise problems are of great assistance in improving clarity and enhancing reader comprehension. The text aims to benefit students and engineers in the civil, mechanical and aerospace sectors.
Developing economies such as those in sub-Saharan Africa are searching for realistic economic policy prescriptions. Despite economic growth in countries like Nigeria, poverty and unemployment blight the lives of many, in the midst of plenty. Simultaneously, much neo-classical economic thought is being questioned against the backdrop of global economic meltdown, giving rise to inquiry about more integral approaches to sustainable development. In An Integral Approach to Development Economics, Basheer Oshodi examines modernization theories, dependency theories, world system theories and emerging 21st century economic theories and links a neo-modern mix of economic thought with the practicalities of finance in parts of the World where poverty is rife. In a specifically African setting, over half of the population are Muslims, Oshodi considers Islamic finance in the context of the triple heritage of indigenous culture, Westernized Christianity, and Islam. He argues that the principles of Islamic banking and finance can be integrated with other elements of that heritage, focusing on meeting the challenges of poverty and unemployment. Islamic finance is not just a religiously-oriented, Sharia-compliant, alternative financial model. It can contribute to overall socio-economic transformation and a wider, people-centred approach to economic development. International organizations, financial institutions, reserve banks, policy makers, donor agencies and students will find resonance in this valuable addition to Gower’s Transformation and Innovation Series.
ICSSD 2002 is the second in the series of International Conferences on Structural Stability and Dynamics, which provides a forum for the exchange of ideas and experiences in structural stability and dynamics among academics, engineers, scientists and applied mathematicians. Held in the modern and vibrant city of Singapore, ICSSD 2002 provides a peep at the areas which experts on structural stability and dynamics will be occupied with in the near future. From the technical sessions, it is evident that well-known structural stability and dynamic theories and the computational tools have evolved to an even more advanced stage. Many delegates from diverse lands have contributed to the ICSSD 2002 proceedings, along with the participation of colleagues from the First Asian Workshop on Meshfree Methods and the International Workshop on Recent Advances in Experiments and Computations on Modeling of Heterogeneous Systems. Forming a valuable source for future reference, the proceedings contain 153 papers ? including 3 keynote papers and 23 invited papers ? contributed by authors from all over the world who are working in advanced multi-disciplinary areas of research in engineering. All these papers are peer-reviewed, with excellent quality, and cover the topics of structural stability, structural dynamics, computational methods, wave propagation, nonlinear analysis, failure analysis, inverse problems, non-destructive evaluation, smart materials and structures, vibration control and seismic responses.The major features of the book are summarized as follows: a total of 153 papers are included with many of them presenting fresh ideas and new areas of research; all papers have been peer-reviewed and are grouped into sections for easy reference; wide coverage of research areas is provided and yet there is good linkage with the central topic of structural stability and dynamics; the methods discussed include those that are theoretical, analytical, computational, artificial, evolutional and experimental; the applications range from civil to mechanical to geo-mechanical engineering, and even to bioengineering.
The fields of boundary integral equations and of inequality problems, or more gen erally, of nonsmooth mechanics, have seen, in a remarkably short time, a considerable development in mathematics and in theoretical and applied mechanics. The engineering sciences have also benefited from these developments in that open problems have been attacked succesfully and entirely new methodologies have been developed. The contact problems of elasticity is a class of problems which has offered many open questions to deal with, both to the research workers working on the theory of boundary integral equations and to those working on the theory of inequality problems. Indeed, the area of static and dynamic contact problems could be considered as the testing workbench of the new developments in both the inequality problems and in the boundary integral equations. This book is a first attempt to formulate and study the boundary integral equations arising in inequality contact problems. The present book is a result of more than two decades of research and teaching activity of the first author on boundary integral equations and, of the second author, on inequality problems, as well as the outgrowth of seminars and courses for a variety of audiences in the Technical University of Aachen, the Aristotle University of Thessa loniki, the Universities of Bochum, of Hamburg and Braunschweig, the Pontificia Univ. Catolica in Rio de Janeiro etc.
Grid Integration and Dynamic Impact of Wind Energy details the integration of wind energy resources to the electric grid worldwide. Authors Vijay Vittal and Raja Ayyanar include detailed coverage of the power converters and control used in interfacing electric machines and power converters used in wind generators, and extensive descriptions of power systems operation and control to accommodate large penetration of wind resources. Key concepts will be illustrated through extensive power electronics and power systems simulations using software like MATLAB, Simulink and PLECS. The book addresses real world problems and solutions in the area of grid integration of wind resources, and will be a valuable resource for engineers and researchers working in renewable energy and power.