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Problem overview

Busse, H. J. Denner, E. B. M. Lubitz, W. Classification and identification of bacteria Current approaches to an old problem overview of methods used in bacterial systematics. J. Biotechnol. 1996, 47, 3-38. [Pg.16]

Ahrens, M., The U.S. Fire Problem Overview Report Leading Causes and Other Patterns and Trends, NFPA, Quincy, MA, June 2001. [Pg.662]

Wilhelm, R., Engblom, J., Ermedahl, A., Flolst, N., Thesing, S. et al. (2008). The worst-case execution-time problem—overview of methods and survey of tools. Transactions on Embedded Computing Systems 7(3) 36 1-36 50. [Pg.30]

In this chapter many of the basic elements of condensed phase chemical reactions have been outlined. Clearly, the material presented here represents just an overview of the most important features of the problem. There is an extensive literature on all of the issues described herein and, more importantly, there is still much work to be done before a complete understanding of the effects of condensed phase enviromnents on chemical reactions can be achieved. The theorist and experimentalist alike can therefore look forward to many more years of exciting and challenging research in this important area of physical chemistry. [Pg.895]

Sanz-Serna, J. M. Symplectic Integrators for Hamiltonian Problems An Overview. Acta Numerica (1991) 243-286... [Pg.346]

For this purpose, a short overview will be given concerning some theoretical properties of the QCMD model (Sec. 2), This will allow for a suitable classification of the application problems. In the course of the following discussion, we will introduce two different classes of integration techniques ... [Pg.396]

Because of the complexity of the problem and the large amount of program development work that has to go into a synthesis design system, only a few groups worldwide have been active in this area. Here, we mention only a selection of the major ideas and achievements in this area. It is not the intention to give a comprehensive overview. For this, interested readers can consult Chapter X, Section 3.2 in the Handbook. This chapter presents one such system, the WODCA program, in greater detail. [Pg.574]

This section provides an overview and review of qtiariititn niech antes calculation s. The in formation can help yon nsellyper-Chern to sol ve p radical problem s. for quan litati ve deta ils o f quan-turn m ecli an ics calculation s an d how HyperChern implements them, see the second part of this book, I heoiy and Methods. [Pg.31]

This Introductory Section was intended to provide the reader with an overview of the structure of quantum mechanics and to illustrate its application to several exactly solvable model problems. The model problems analyzed play especially important roles in chemistry because they form the basis upon which more sophisticated descriptions of the electronic structure and rotational-vibrational motions of molecules are built. The variational method and perturbation theory constitute the tools needed to make use of solutions of... [Pg.73]

This article addresses the synthesis, properties, and appHcations of redox dopable electronically conducting polymers and presents an overview of the field, drawing on specific examples to illustrate general concepts. There have been a number of excellent review articles (1—13). Metal particle-filled polymers, where electrical conductivity is the result of percolation of conducting filler particles in an insulating matrix (14) and ionically conducting polymers, where charge-transport is the result of the motion of ions and is thus a problem of mass transport (15), are not discussed. [Pg.35]

This discussion of pressure vessels is intended as an overview of the codes most frequently used for the design and construction of pressure vessels. Cnemical engineers who design or specify pressure vessels should determine the federal and local laws relevant to the problem and then refer to the most recent issue of the pertinent code or standard before proceeding. Laws, codes, and standards are frequently changed. [Pg.1022]

Once the decision has been made to use QRA, the next step is to execute it effectively. Chapter 3 describes the process of setting up an individual QRA. This chapter discusses the importance of defining the right problem for analysis and selecting the right analysis techniques it also provides an overview (not a how to) of the various classes of QRA techniques. Chapter 4 discusses ways to interpret and use QRA results. Conclusions about the future of QRA in the CPI are offered in Chapter 5. [Pg.92]

In an excellent historical overview of these stages and the intellectual and practical problems which had to be overcome, Mulvey (1995) remarks that the first production microscopes pursued exactly the same electron-optical design as Ruska s first experimental microscope. The stages of subsequent improvement are outlined by Mulvey, to whom the reader is referred for further details. [Pg.218]

An excellent, accessible overview of what surface scientists do, the problems they address and how they link to technological needs is in a published lecture by a chemist, Somorjai (1998). He concisely sets out the function of numerous advanced instruments and techniques used by the surface scientist, all combined with UHV (LEED was merely the first), and exemplifies the kinds of physical chemical issues addressed - to pick just one example, the interactions of co-adsorbed species on a surface. He also introduces the concept of surface materials , ones in which the external or internal surfaces are the key to function. In this sense, a surface material is rather like a nanostructured material in the one case the material consists predominantly of surfaces, in the other case, of interfaces. [Pg.410]

Average moleeular weight development can be measured directly through GPC or SEC, as we mentioned earlier. These measurements have their own problems, but can be very useful when properly tested and interpreted. They provide an excellent basis for predicting PF performance. They can also give an overview of PF eondensation kinetics and even some information about polymer shapes. However, they do not provide detailed information on the chemical structure of the polymer. Such information is required to propose reasonable mechanisms. C-... [Pg.906]

The intent of the walkthrough inspection is to acquire a good overview of occupant activities and building functions and to look for lAQ problem indicators. No specific forms are suggested for this stage of lAQ profile development. However,... [Pg.202]

Water Treatment FAQ - By Patton Turner. Excellent overview of all water treatment methods and associated problems, http //www. providenceco-op.com/waterfaq. [Pg.442]

Due to the complexity of macromolecular materials computer simulations become increasingly important in polymer science or, better, in what is now called soft matter physics. There are several reviews available which deal with a great variety of problems and techniques [1-7]. It is the purpose of the present introduction to give a very brief overview of the different approaches, mainly for dense systems, and a few apphcations. To do so we will confine ourselves to techniques describing polymers on a molecular level. By molecular level we mean both the microscopic and the mesoscopic level of description. In the case of the microscopic description (all)... [Pg.481]


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See also in sourсe #XX -- [ Pg.47 , Pg.48 , Pg.49 , Pg.50 , Pg.51 ]




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