Examples of 'theoretical density' in a sentence
Meaning of "theoretical density"
theoretical density - This phrase likely pertains to a scientific or mathematical concept, indicating the calculated or predicted density of a substance or material based on theoretical models or assumptions
How to use "theoretical density" in a sentence
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theoretical density
The measured densities are close to the theoretical density.
It is partly this theoretical density that has made the entire IGE field so controversial.
Trimanganese tetraoxide and dimanganese trioxide have high theoretical density.
A density very close to the theoretical density is obtained thereby.
The density of a molded article is expressed as a ratio to the theoretical density.
Theoretical density for a sample with no voids,.
Table IV shows resulting densities in terms of percent of theoretical density.
Absolute and theoretical density determinations are made and correlated with delivery, efficiency.
The resultant composite had a density greater than 98 percent of theoretical density.
Relationship between the compaction level, the theoretical density and the TiC percentage obtained after.
The part obtained has a density corresponding to 95 % of the theoretical density.
The percentage of theoretical density measurements are given in Table 3 below.
Utilising the optimum conditions outlined, a base layer approaching theoretical density can be produced.
Above 18 wt % of theoretical density the filtering rate is too slow to be effective.
The ratio of each measured density to the theoretical density is shown on Table 1.
See also
A density of the molded compact after degreasing was 61.5 percents in comparison with a theoretical density.
Figure 4 shows the density as a fraction of theoretical density for the compositions shown in Table 2.
The composite had a density of at least 98 percent of theoretical density.
Silicon nitride with a theoretical density of 99 % can be prepared by hot pressing sintering.
The density after fritting was equal to 95 % of the theoretical density.
The theoretical density of the block is less than 85 % of the density after the dense-sintering.
Densities of at least 97 % of the theoretical density may be reached.
They are characterized principally by a high density, greater than 94 % of their theoretical density.
T is the theoretical density of Geopolymer concrete computed on an air free basis ( kg/m3 ).
A material having a density equal to 96 % of the theoretical density was obtained.
Preferably, the sintered target has a density of at least 92 percent of the theoretical density.
A material having a density equal to 96 % of the theoretical density was produced.
The cermet part of the consolidated final composite body has a density of 75 % of theoretical density.
By following certain pressing and sintering techniques, a billet of over 99 % theoretical density can be achieved.
The density of the sintered compound is preferably at least 93 % of the theoretical density.
For all practical purposes G and S are equal to 4.0, the theoretical density of alpha alumina.
The carrier has a substantially totally interconnected porosity at densities less than 30 % of theoretical density.
The abrasive has a density of at least about 95 % of theoretical density.
The pellet can have a density of about 85 % or greater theoretical density.
The powder body has a density of about 60 % of the theoretical density.
The raw density of the compacted shaped article was equal to 54 % of the theoretical density.
The ceramic composite may have a density of 95 % or more of the maximum theoretical density.
The density may be in the range from less than 0.1 g / cc to approximately theoretical density.
Desirably, the density of the finished ceramic approaches, and especially attains, theoretical density.
Preferably, the density of the sintered article is greater than 97 % of the full theoretical density.
Table 1 gives the compaction data and the green and % of the theoretical density.
There is generally no volume change and the final density is usually 100 % of theoretical density.
In practice, it is possible to attain up to 95 % of the theoretical density.
By extrusion and rolling to substantially 100 % theoretical density.
They are generally compressed to between 55 and 95 % of the theoretical density.
Calcined non-sintered particles are typically about 50 % of theoretical density.
The resultant sintered part has a density of 99.5 percent of theoretical density.
For example, the density can be at least about 95 % theoretical density.
The ceramic wafer of claim 42 having a density of at least 99 % of theoretical density.
Preferably the silicon carbide layer has a density at least 99.9 % of theoretical density.
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