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    Models of Collapsing and Expanding Anisotropic Gravitating Source in f(R,T)f(R,T) Theory of Gravity

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    In this paper, we have formulated the exact solutions of the non-static anisotropic gravitating source in f(R,T)f(R,T) gravity which may lead to expansion and collapse. By assuming the no thermal conduction in gravitating source, we have determine parametric solutions in f(R,T)f(R,T) gravity with non-static spherical geometry filled with anisotropic fluid. We have examined the range of parameter for which expansion scalar become negative and positive leading to collapse and expansion, respectively. Further, using the definition of mass function the condition for the trapped surface have been explored and it has been investigated there exists a single horizon in this case. The impact of coupling parameter λ\lambda has been discussed in detail in both cases. For the various values of coupling parameter λ\lambda, we have plotted energy density, anisotropic pressure and anisotropic parameter in case of collapse and expansion. The physical significance of the graphs has been explained in detail.Comment: 18 Pages, 8 Figures, Accepted for Publication in European Physical Journal

    The design and investigation of the self-assembly of dimers with two nematic phases

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    A series of non-symmetric dimers were synthesised containing either cyanobiphenyl or difluoroterphenyl moieties on one side and a range of long, short, bent, polar or apolar mesogens on the other side of the molecules. The dielectric anisotropy of the mesogens was varied systematically. The systems were characterised by differential scanning calorimetry (DSC), optical polarizing microscopy (OPM) and detailed X-ray diffraction (XRD) studies, both in the nematic and the Nx phase. The results are compared and structure properties relationships are discussed. A model for the assembly in the Nx phase is developed discussing Ntb structures, coaxial helices, swiss roll structures and chiral domain formation
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