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Titlebook: Inverse Scattering Problems in Optics; Heinrich P. Baltes Book 1980 Springer-Verlag Berlin Heidelberg 1980 Inverses Streuproblem.Optik.inv

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G. Ross,M. A. Fiddy,M. Nieto-Vesperinase algorithm, and the Digital Signature Standard, use modular exponentiation extensively. The performance of all these applications strongly depends on the efficient implementation of modular exponentiation and modular multiplication. Since 1984, when Montgomery first introduced a method to evaluate
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M. Bertero,C. De Mol,G. A. Viano simultaneously, for achieving higher throughput with a constant frequency. As we know that, modular exponentiation is a series of modular multiplications and in order to achieve better performance, we need an efficient implementation of modular multiplication. The modular multiplication has costly
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W.-M. Boernerto the subject of energy-efficient networking. Energy savings in a network can be attained in many ways, and researchers have explored a plethora of avenues for achieving such savings. In sensor networks, where energy savings are paramount for extending the life of the network, much research has gon
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y of service of the application and the resource consumption of the network; especially, for a rapidly growing class of real-time applications that impose strict restrictions on packet delays. Dynamic rate control is a novel technique for adapting the transmission rate of wireless devices, almost in
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Progress in Inverse Optical Problems,rers. The inverse or indirect problem is to deduce features of sources or scattering objects from the emitted or scattered radiation that has propagated to a detector. A small selection out of the large number of topics pertinent to the inverse problem in optical physics was examined in a previous v
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