![]() ![]() Comparing the experimental graphs with the theoretical equations it was possible obtained their mechanical properties and the principal stresses-strains of the anisotropic gold thin film. With the data, it is possible to make graphics, "(strain) X F, for every force applied to the sample. As the gold thin film and substrate are considered transversely isotropic, therefore, is firstly required a texture analysis with the purpose of determining the possible Euler angles () and ( ) for each crystallographic direction that can be used in the model equations. As an application, it uses the technique and data developed by Faurie et al (2005) in fibber-textured gold film deposited onto Kapton substrate by combining synchrotron X-Ray diffraction in situ tensile testing. A new equation for the stress of the film-substrate system is proposed based on Newton's laws and energy conservation. ![]() Therefore, the constitutive relation between strain and stress will be considered orthotropic, obeying the generalized Hooke's law. It is entirely possible to dene and to analyse anisotropy in elastic media from first principles in thin films. The approach differs from the standard literature which usually brings crystal symmetries or is directly concerned with crystalline materials. The purpose of the present article is to make a model using analytical equations, based on elasticity theory of continuous media for small deformations, with the aim of completely characterizing the material in their mechanical properties as well as the principal stresses-strains of thin films. A specific statement for electromagnetic repulsion: the MBH in O must be replaced by a mini white hole (MWH) acting as a repulsive geyser. More, considering that there would exist three mini black holes (MBH) on the gravitational axis of the neutral or charged masses (one in every gravitational center and another in the zero resulting potential point O) better illuminates the phenomenological physical comprehension of attractions and repulsions for these two forces of classical physics. This reconsideration allows concluding the integration of gravity to electromagnetic force in a third specific case – two neutral masses. The standardization lies in realistic taking into account of surfaces emissions effects in the space-time (neutral and charged masses) according their equivalent black body temperatures Te. ![]() The basis of this primary and essential standardization of initiators physical principles strong approximation (new concept in EVTD2 theory) concerns the gravitational fields and those appearing in electrostatic. ![]()
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