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Density functional theory (DFT) is by now a well-established method for tackling the quantum mechanics of many-body systems. Originally applied to compute properties of atoms and simple molecules, DFT has quickly become a work horse for more complex applications in the chemical and materials sciences. The present set of lectures, spanning the whole range from basic principles to relativistic and time-dependent extensions of the theory, is the ideal introduction for graduate students or nonspecialist researchers wishing to familiarize themselves with both the basic and most advanced techniques in this field.
These proceedings discuss the quantal system with many particles mainly from the theoretical point of view. The topics discussed include the relativistic nuclear many-body problem, perspective in hadron structure, mean-field and semiclassical methods, thermal theories, symmetries and group theoretical methods, and density functional theories.
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Metallic systems are ubiquitous in daily life. They play key roles, for example, in the chemistry of many biomolecules, ionic solutions, nanoparticles, and catalytic processes. They may be in solid, liquid, or gaseous form. The interactions of other molecules with metal surfaces are of considerable importance. Each of these topics is addressed in M
Density Functional Theory (DFT) has firmly established itself as the workhorse for atomic-level simulations of condensed phases, pure or composite materials and quantum chemical systems. This work offers a rigorous and detailed introduction to the foundations of this theory, up to and including such advanced topics as orbital-dependent functionals as well as both time-dependent and relativistic DFT. Given the many ramifications of contemporary DFT, the text concentrates on the self-contained presentation of the basics of the most widely used DFT variants: this implies a thorough discussion of the corresponding existence theorems and effective single particle equations, as well as of key appr...
Annotation The proceedings of the July 1997 conference reflect the interdisciplinary nature of cluster science. Topics of the 63 papers include shell and supershell structure; optical response and related subjects; fission and evaporation; collisions and reactions; phase transition of structure and reaction; cluster impact on solids at low energies (2 parts: cluster activity on surface and material science); radio activity technology for cluster study; and cluster impact on solid surfaces at high energies. Introductory and summary talks are also included. No index. Annotation c. by Book News, Inc., Portland, Or.
“Patenting Nanomedicines: Legal Aspects, Intellectual Property and Grant Opportunities” focusses on the fundamental aspects of Patenting Nanomedicines applied in different “Drug Delivery and Targeting Systems”. The promoters of new findings in this field of research are numerous and spread worldwide; therefore, managing intellectual property portfolios, and the acquisition and exploitation of new knowledge face several contingency factors. Today, the scientific community is discussing issues of economic outcomes in the field of Nanomedicines. Major concerns include questions as to whether the research groups, academics, industry and other stakeholders should work in unison or indepen...
The space of Renaissance anatomy is not solely in the physical theatre. As this collection demonstrates, the space of the theatre encompasses every aspect of Renaissance culture, from its education systems, art, and writing to its concepts of identity, citizenship, and the natural world. This book argues that Renaissance anatomy theatres were spaces of intersection that influenced every aspect of their culture, and that scholars should broaden their concept of anatomy theatres to include more than the physical space of the theatre itself. Instead, we should approach the anatomy theatres as spaces where cultural expression is influenced by the hands-on study of human cadavers. This book enters the ongoing conversation surrounding Renaissance anatomy by dialogically engaging with such scholars as Jonathan Sawaday, Merry E. Wiesner-Hanks, Kathryn Schwarz, and primary texts such as ‘De humani corporis fabric’, Montaigne’s ‘Essais’, and Shakespearean plays. The book also features Renaissance artwork alongside works by Laurence Winram.