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The interaction between Strain×Week was significant (p=0.007) while the main effects Strain or Week alone were not significant.
Several physical phenomena are captured through numerical simulation of the class of materials of interest: size effects, strain localization, and the fracture process.
In support of the sex-specific QTL effects strain by sex interactions (P < 0.04) were seen for the following growth traits: 3WK, 6WK, 9WK, G26, G29 and NA (data not shown).
Although the proportion of ant cadavers sporulating was consistently high (>80%) in strain 02 73 and was positively correlated with dose in the other strains, the interaction between strain and dose was nonsignificant (Wald = 8.92, d.f. = 15, P = 0.882), as were both the main effects (strain: Wald = 2.81, d.f. = 3, P = 0.422; dose: Wald = 5.49, d.f. = 5, P = 0.359).
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Its episodic swatches ultimately degenerated into sound effects, straining to express a meaning that lay beyond their reach.
To boost performance and to obtain greater allowance to parasitic RC effects, strained body may be used.
Besides electric field effect, strain can also alter the low-energy band structure of layered 2D materials.
The effects of size effect, strain rate effect and the specific equation of state on the dynamic material behaviour are investigated using numerical modelling method.
The relative contributions and interplay of indentation size effect, strain rate and temperature on the creep response is also explored.
The results are consistent with collagen preconditioning steming from stretch induced increase in the reference length, while in elastin it is the Mullins effect (strain softening).
Phenotype values were fit using an ANOVA model with a single fixed effect (strain), and heritability was calculated as the adjusted percentage of variance explained.
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