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A simple universal relation is derived for the critical chipping load in terms of indent location and material toughness.
A relation is derived for the specific pressure drop, linking thermal effectiveness with pressure drop of the air inside the tube.
In this paper, an indentation law (force – indentation relation) is derived for a doubly curved composite sandwich panel subjected to a flat-ended cylindrical indenter using the principle of minimum potential energy.
Linearized stress strain relation is derived for infinitesimal deformations with a very unusual shear stress that does not vanish identically as in the case of the soft behavior but is proportional to the rotation of directors.
Using Coble creep with a threshold stress for finer grains and conventional Hall Petch strengthening for larger grains, an analytical relation is derived for the yield stress as a function of grain size for a range from very large to very small.
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Simplified relation was derived for calculation of mean crystal size of product crystals from the batch cooling crystallizer.
A relation was derived for the plug velocity as a function of the gas velocity, solids flux, riser diameter, particle size range and particle and powder properties.
The film thickness was measured as a function of time and height, using interference colours which were evaluated by a computer program, and a film thinning relation was derived for this type of films.
Both energy and exergy relations were derived for the considered the HCPF.
Quantitative relations are derived for the effects of adding and removing single measurements on estimation accuracy.
In part I of the work, instantaneous effective stress strain relations were derived for fixed microstructure.
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