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Active investing strategies to profit from world-changing trends In The Next Great Bull Market, Matthew McCall advocates an approach he calls, "Conversification," meaning concentrating your investments in specific areas that are poised to benefit from global change. The areas of change addressed throughout this book include the green movement, infrastructure expansion, commodities, peak oil, the next great commodity-water-aging baby boomers, a growing global middle class, geopolitical upheavals, and the explosion of exchange-traded funds. With today's world characterized by rapid change on many different levels, McCall's approach holds even greater promise in the years ahead. Page by page, he provides strategies for both conservative investors interested in long-term growth and aggressive investors interested in generating fast profits. Describes the dynamics driving each major change and provide specific strategies to take advantage of them Shows how to profit from short-term swings in fast-moving sectors of the world economy Highlights how to use various investment vehicles, including ETFs, stocks, and options Investors who understand and anticipate the changes ahead stand to profit handsomely. With The Next Great Bull Market as your guide, you'll quickly discover how the trends that are changing the world can be used to enhance the performance of your portfolio.
On May 21-24, 1997 the Second International Symposium on Algorithms for Macromolecular Modelling was held at the Konrad Zuse Zentrum in Berlin. The event brought together computational scientists in fields like biochemistry, biophysics, physical chemistry, or statistical physics and numerical analysts as well as computer scientists working on the advancement of algorithms, for a total of over 120 participants from 19 countries. In the course of the symposium, the speakers agreed to produce a representative volume that combines survey articles and original papers (all refereed) to give an impression of the present state of the art of Molecular Dynamics. The 29 articles of the book reflect the main topics of the Berlin meeting which were i) Conformational Dynamics, ii) Thermodynamic Modelling, iii) Advanced Time-Stepping Algorithms, iv) Quantum-Classical Simulations and Fast Force Field and v) Fast Force Field Evaluation.
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Substances possessing heterogeneous microstructure on the nanometer and micron scales are scientifically fascinating and technologically useful. Examples of such substances include liquid crystals, microemulsions, biological matter, polymer mixtures and composites, vycor glasses, and zeolites. In this volume, an interdisciplinary group of researchers report their developments in this field. Topics include statistical mechanical free energy theories which predict the appearance of various microstructures, the topological and geometrical methods needed for a mathematical description of the subparts and dividing surfaces of heterogeneous materials, and modern computer-aided mathematical models and graphics for effective exposition of the salient features of microstructured materials.