Sentence examples for stretch modulus from inspiring English sources

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The total stretch modulus was 4.2 GPa while the relaxed elastic modulus was 3.7 GPa.

In the presence of monovalent Na+ ions, we find that the stretch modulus (γ1) of the paranemic crossover and its topoisomer JX DNA structure is significantly higher (∼30%) compared to normal B-DNA of the same sequence and length.

It allows to calculate the complete set of chromatin elastic constants (twist and bend persistence lengths, stretch modulus and twist stretch coupling constant), in terms of DNA elastic properties and geometric features of the fiber.

A novel analysis, as far as we are aware, of the elastic properties of the molecular setup, based on high-bandwidth measurements of force fluctuations along the folded branch, reveals that the highest SNR that can be achieved with short handles is potentially limited by the marked reduction of the effective persistence length and stretch modulus of the short linker complex.

PGA (polyglycolic acid) is reinforced by PLA fibers; CM increased with volume of PLA fibers linearly, which change by 0%~68% CM increased by 20 times [ 97]. 3%~17% volume change of elastic fibers was reinforced by collage fibers; the stretch modulus increased by 1 time with the same fiber angles while the angle change for 15 not significant changed the stretch modulus.

The parameters used for dsDNA were as follows: the persistence length was P ds = 50 nm, stretch modulus S ds = 1000 pN, and the contour length per base pair h ds = 0.34 nm/bp.

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Fig. 7 The effective mass of hole, the stretching modulus, the deformation potential constant of VBM, and hole mobility for a d As and e h Sb nanoribbons.

Here, C 1D is the stretching modulus, m ∗ is the effective mass of hole, and E is the deformation potential constant of VBM for holes.

Successful correspondence of the computed stretching modulus with experimental data requires that the DNA base pairs be inclined with respect to the direction of stretching, with chain extension effected by low energy transverse motions that preserve the strong van der Waals' attractions of neighboring base-pair planes.

Moreover, we have taken into account the case in which an in-plane tension N0 is driven by pre-strain, such as N0 = E S hϵ0/(1 − ν), where ESh, and ν indicate the stretching modulus, thickness, and Poisson's ratio of a graphene resonator, respectively, and ϵ0 is the pre-strain applied to a graphene resonator.

The elastic stretching modulus was arbitrarily chosen to be 250 pN, in order to provide reasonable computational time.

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