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Both describe the transitional stress field between a normal faulting (NF) and strike-slip (SS) regime.
However, a mean S Hmax orientation of N119°E N138°E is observed in the SE Sweden area (Stephansson et al. 1991) and linear stress depth relations predict a transitional stress state between thrust and strike-slip faulting with S v ≈ S hmin ≪ S Hmax (Hakami and Min 2009; Klee and Rummel 2002).
Measured and derived orientations of SHmax determined down to 5 km varies between N125°E and N185°E with a mean value of N175°E ± 10° (Cornet et al. [2007]) and indicate a transitional stress state down to 5 km with a change from normal to strike-slip faulting at depths below 3 km (Cuenot et al. [2006]).
The transition of the stress orientation and the change of the faulting regime by permutation of σ1 and σ2 (Larroque et al. [1987]) occurs in the central segment of the URG, in the area of the site of investigation, probably causing a transitional stress state between normal and strike-slip faulting.
It is found that the stress strain relationship of FRP-confined prism has either a strain-hardening or a strain-softening response, which mainly depends on the confinement strength of FRP, corner radius of cross-section, etc. Equations to predict the transitional stress and strain of FRP-confined concrete prisms are presented.
Separation Anxiety: Transitional stress in the back-and-forth between parents is normal.
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Developed by Lazarus and Folkman, the Transitional Model of Stress and Coping describes the process of adaptation to a health condition [ 14].
In this transitional regime, the yield stress slightly changes the interior dynamics as can be seen in various convective parameters of the interior region of the cell.
As discussed in Section 2, a transitional to normal faulting stress regime in the central part of the URG in general and in Bruchsal in particular is rather likely.
Laminar kinetic energy modeling is in continuous evolution and is a good alternative to deal with engineering simulation that needs a good prediction of wall shear stress in transitional flows.
These clusters reflected the general trends and key transitional states during NaHCO3 stress.
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Justyna Jupowicz-Kozak
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