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Outlook for Future Work

The main idea of using an experimental-based model approach for damage calculation is discussed in the following. A brief introduction to known damage accumulation ideas is given. Additionally several aspects of system and parameter identification are described. Hence, the new approach is explained and the results of calculations are shown. This contribution closes with a discussion of the results and an outlook to future work. [Pg.229]

This paper is organized as follows In Sec. 2 we present relevant related work. Then, we outline our approach for a cross-domain safety assurance process. The benefits of this process are discussed in Sec. 4. This paper is concluded and an outlook to future work is given in the last section. [Pg.397]

This paper is structured as follows Section 2 provides an overview of the mbeddr technology stack which is the basis of our reference implementation. In Section 3, we introduce an example language extension for which we describe the debugger extension in Section 6. Section 4 lists the requirements for our extensible debugger and Section 5 describes the essential building blocks of the architecture. We validate our approach by discussing debuggers for non-trivial extensions of C in Section 7. In Section 8, we discuss the benefits, trade-offs and limitations of our approach. We then look at related work in Section 9 and conclude the paper with a summary and an outlook on future work in Section 10. [Pg.34]

In addition to all of the online resources listed in Appendix C, the Occupational Outlook Handbook (http //www.bls.gov/oco) is a nationally recognized source of career information, designed to provide valuable assistance to individuals making decisions about their future work lives. This is an excellent resource for understanding job titles and responsibilities, and determining how you can incorporate this information into your resume. [Pg.214]

We will in the presentation below review some of our recent work in this area. Those results which have already been published elsewhere will only be briefly summarized, while previously unpublished material will be presented in greater detail. In particular, the material in Section 2, and parts of 3.2, and 4.1, 4.2, and 4.3 is essentially new. Some outlooks for the future, connected especially with the application of ultrafast laser techniques, are given in section 5. [Pg.205]

The arrangement of this chapter will be as following. Firstly, we discuss the construction of the bonded tableau basis and its properties. Secondly, the paired-permanent-determinant method is derived, followed by the introduction of our Xiamen-99 ab initio VB program. Then we show the applications of the ab initio VB method to the resonance effect, chemical reactions, as well as to excited states. Finally, we give a brief summary and an outlook for our future work. [Pg.145]

The organisation of this chapter is as follows. In Sect. 9.2 the principles of the interaction between ionizing radiation and condensed matter will be dealt with. In Sect. 9.3 the principles of several applications will be discussed and the material requirements specified. The preparation of the materials will concentrate on single crystal growth and will be discussed in Sect.9.4. Finally Sect. 9.5 will give a survey of the several materials in u.se and Sect. 9.6 will present a future outlook. For more details than presented here, the reader is referred to the proeeedings of a recent work.shop [IJ. [Pg.170]

In this section an overview on the available technologies for continuous mixing and to compare its benefits with traditional batch mixing is discussed. Further work needs to be done before continuous mixing is widely accepted and an outlook in the next future will be discussed as well. [Pg.995]

With this Outlook we have tried to comment on some topical questions about ionic liquids. Of course, we know that it is extremely difficult and probably foolish to try to predict the future, but we found the discussions that were initiated by the Outlook ofthe first edition of this book so fruitful and so important for our own work that we did not want to miss the opportunity to write an Outlook of this kind again. [Pg.701]

This review deals with both the theoretical and practical aspects of the use of ESR spectroscopy in molecular sieve science. No attempt has been made to compile an exhaustive list of references to all the work that has been published so far. Rather, we have selected what, we feel, are the most important developments and also, where possible, we have drawn examples from our own work. In a first part, the ESR technique and its extensions such as ENDOR and ESEEM, will be highlighted with special emphasis on the principles of the techniques and the instrumental requirements. Attention will also be given to spectral simulation and to quantitative analysis. In a second part, the general features of ESR spectra of transition metal ions in molecular sieves are analyzed. In addition, some remarks will be made on paramagnetic metal clusters and on paramagnetic molecules. The chapter closes with general conclusions and an outlook into the future. For detailed explanations and discussions-in-depth, we refer to several excellent text books [1-9] and review papers [10-14]. [Pg.296]


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