Numerical investigation of large elastoplastic strains of three-dimensional bodies derivative of the Cauchy-Euler 
stress tensor and the strain rate. The spatial discretization is based
 Numerical investigation of large elastoplastic strains of three-dimensional bodies derivative of the Cauchy-Euler 
stress tensor and the strain rate. The spatial discretization is based
 Construction of a representative model based on computed tomography, the invariant of the 
stress tensor is used. The obtained results illustrate not only a sufficient accuracy
 Modelling of large deformations of elastoplastic solids using FEM for the Cauchy 
stress rate 
tensor. Computer implementation is based on finite elements method.
 The role of intermolecular interactions in the viscoelastic properties of polymer meltsThe exact microscopic expression for the 
stress tensor in polymer liquids contains a 
tensor product
 Numerical investigation of large strains of incompressible solids and left Cauchy-Green 
tensor. The 
stress state is described by the Cauchy 
stress tensor. Constitutive