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Titlebook: Shell and Membrane Theories in Mechanics and Biology; From Macro- to Nanos Holm Altenbach,Gennadi I. Mikhasev Book 2015 Springer Internatio

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Linear Oscillations of Suspended Graphene,ng elements of nanosystems. This work is devoted to derivation of natural frequencies of such sheets. Two different approaches are proposed. The first one is based on representation of the graphene sheet as a thin rectangular membrane. In this case the transversal oscillations are described with the
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A Shell Theory for Carbon Nanotube of Arbitrary Chirality, one of us in the occasion of the international conference ‘SMT in MB’. A characterization is given of the mechanical response of the linearly elastic, anisotropic shell we propose to associate to a single-wall carbon nanotube of arbitrary chirality.
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Finite Axisymmetric Deformation of an Inflatable Anisotropic Toroidal Membrane,ds located along parallels and meridians and is considered as anisotropic membrane. The nonlinear theory of membranes is used. To find membrane deformations and displacements the system of ordinary differential equations of the fourth order is delivered. The method of asymptotic integration in the c
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Simulation of Cardiac Cell-Seeded Membranes Using the Edge-Based Smoothed FEM,. that we couple to the McAllister-Noble-Tsien electrophysiological model of purkinje fibre cells. The corresponding system of ordinary differential equations is implemented on the level of the constitutive equations in a geometrically and physically nonlinear version of the so-called edge-based smo
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