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Through this equation we were able to estimate the lifespan of the joints loaded to 8.5 MPa which are still being tested.
Volumetric coefficient of thermal expansion is expressed through this equation: β = − 1 ρ ∂ p ∂ T p Open image in new window ρ ∞ − ρ = ρβ T − T ∞ Open image in new window (10).
In a validation population, the ITBV estimated through this equation from GEDV measured by single thermodilution was a reliable estimation of the ITBV measured by thermo-dye thermodilution [25].
According to the conductance-gate voltage characteristic of graphene-based electrolyte-gated graphene field effect transistor (GFET) devices, the performance of biomimetic membrane-coated graphene biosensors can be estimated through this equation.
In a validation population, the ITBV estimated through this equation from GEDV measured by single thermodilution was a reliable estimation of the ITBV measured by thermo-dye thermodilution [ 25].
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Through algebraic rearrangement, this equation can be put in the following form: frac{D{ v}_x}{ D t}=frac{mathit{mathsf{g}}}{ cos left alpha right)}left( tan left alpha right)- tan left(theta right)right)+ g kfrac{partial h}{partial x} (10).
This paper reports results of a new formulation which uses the Forchheimer equation to describe fluid flow through fractures and couples this equation with Darcy's law in order to describe flow through the matrix.
The cubic law estimates the fluid flow rate for flow through fractures systems; usually, this equation is used in naturally fractured tectonic reservoirs (NFTRs), considering the laminar flow of a viscous fluid between parallel flat plates (Barros-Galvis et al. 2015; Potter and Wiggert 2007).
If there are five confidence criteria for making a positive ID (as in Fig. 2), there would be five separate confidence parameters to inset into this equation (c1 through c5).
Tracing oxygen through the equation indicates that this is not a simple substitution reaction in which elemental oxygen is stripped from carbon dioxide, released, and replaced with hydrogen and hydroxyl groups.
This information can be used to characterize their degradation rate constants through the equation kdeg = (ln 2/ t1/2/.
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