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The buckling equations derived agree with the equation of [Allen, H.G., 1969.
In general, our data and the particle models derived agree well with those published previously at lower resolution at 4oC [21].
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A bell-shaped scaling law of the rate dependence is derived, agreeing quantitatively well with the results of experiments.
Theoretical expressions for the stress intensity factor and the toughness are derived, agreeing well with numerical results.
It has also been shown that, from the first stage of two-stage absorption curves, diffusion coefficient values can be derived agreeing with those evaluated by Takizawa et al. from steady state permeation and equilibrium sorption data.
The derived relationships agree well with experimentally obtained data.
Finally, it is illustrated that these derived results agree qualitatively well with existing experiments.
The derived temperatures agree well with those computed from measurements of [H] using an enthalpy balance.
The derived values agree well with the existing data and open the way to more extensive and more complete investigations.
Constitutive laws for material behaviour and evolution equations for the non-equilibrium fields are derived that agree with the laws of thermodynamics.
Up to degree (napprox 40), all derived models agree relatively well with MF7 and CM5, whereas above that degree, ({mathrm {SM}}_{mathrm {v}}), ({mathrm {SM}}_{mathrm {vNS}}) and ({mathrm {SM}}_{mathrm {vEW}}) have considerably more power.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com