Monday, June 17, 2019

An application of Electromagnetics Theory (see directions) Research Paper - 1

An application of Electromagnetics Theory (see directions) - Research Paper congresswomanIn the overview of the EMF applications, the main aim of this paper is to analyze the manner in which the electromagnetic theory has been applied and some of the benefits and disadvantages of its use. The analysis will too focus on its application for instance in the case of the moo 3d frequency electromagnetic modeling of the human eye with divisional boundaries that atomic number 18 applicable to the (CK) conductive keratoplasty (Lindebaum 298).The surgical technique (CK) Conductive keratoplas is an example of an application that utilizes the electromagnetic theory. It entails a process where the cornea is penetrated by the use of a subtile electrode that sends radio-frequency pulse energy to the environs surrounding the tissues in the eye. The heat energy from the electromagnetic is then dispelled into the tissues, which not only tighten thermally but to a fault shrink the lamellae colla gen. This process allows the doctors to cure common eye diseases like astigmatism and far-sightedness and correct the corneas shape (Itin 3361).A much more technical exposition of the CK process would include it being understood from the perspective that biological tissue all have different permatives and conductives and due to this aspect the exposure of biological tissues to low intensity systems and high voltages should be preferably don in such electrical fields. Therefore, low frequency electromagnetic field calculations require boundary element method (BEM) and macroscopic Maxwell equations in their applications, which will later be used to solve the electric problem in the eye (Wolpe 388).Combination of noncontinuous and continuous collocations nodes fecal matter be used where there are possible potentials that will have to be attached and assigned to the nodes continuously and the discontinuous nodes can be attached and assigned to the electric fields. Through this, there

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