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Titlebook: Inverse Problems in Electric Circuits and Electromagnetics; V. L. Chechurin,N. V. Korovkin,M. Hayakawa Book 2007 Springer-Verlag US 2007 c

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ithin cascades of chemical processes. It is the source of all life on earth, and once convective clouds are formed, it enables large vertical transports of momentum, heat and various atmospheric constituents up to levels above the tropical tropopause. Water triggers very complex processes at the ear
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developed, transition and developing countries. As a consequence of increased consumption per capita and a larger population, it is projected that global meat consumption will increase by 40% in 2030 and 70% in 2050. This has large resource use implications and furthermore the foreseen increased pro
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films to structural components. Largely because of the very large molecular weights of the molecules comprising them, plastic melts can be very viscous and consequentially difficult to process into finished goods. Industrial devices, such as shown in Fig. 1, have been developed to forcefully melt an
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problems of energy and the environment have been at the centre of the stage both in national politics and international relations. Not only are these issues frequent items of front-page news, but many extraparliamentary groups have established themselves with the object of defending the public at la
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Inverse Problems in Electrical Circuits and Electromagnetic Field Theory,cteristics of sources must be specified. Circuit currents and voltages, as well as other derived quantities such as real or reactive power, can then be determined. Similarly, the frequency-dependent or transient characteristics of the circuit can be determined.
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Methods of Solution of Stiff Inverse Problems,iff problems which will be considered in order to become familiar with their basic properties, and subsequently give definitions of problems of such a type. Further, in Sections 3.2 and 3.3, two basic principles will be introduced which provide a basis for solving stiff problems. Specifically, the p
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