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The effect of light on the liquid crystal elastomer beam is modeled as an inhomogeneous and time-dependent light-induced contraction strain and the dynamic equations of the beam are derived using the Hamilton's principle.
On the theory side, this paper contains calculated reference values for the expected lattice parameter contraction (strain) from defects in graphene films.
On the theory side, we link an observed lattice parameter contraction (strain) in the films to defects (edges or point defects).
Poisson's ratio is defined as the ratio of the transverse extension strain to the longitudinal contraction strain in compression.
The observed extension strain in the radial component at the AVOT is different from the calculated contraction strain.
The Poisson's ratio is the ratio of transverse contraction strain to longitudinal extension strain in the direction of stretching force.
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Intuitively, it can be thought of as the constant that relates the degree of contraction (or strain) in a block of material to the pressure (or stress) exerted on its ends.
However, this could only be applied on half of the subjects due to the angle dependency between the ultrasound beam and the direction of the contraction in strain rate recordings.
We predicted that if MyoFb dedifferentiation would start immediately after embedding, 3-DCM contraction and strain would remain mild and MyoFb dedifferentiation is further promoted.
Many factors can contribute to the observed bone formation including load-driven blood perfusion, muscle contraction, and strain induced fluid flow (Fig. 7).
The CD tone at rest and crural contraction on straining probably share in preventing gastro-esophageal reflux under resting and stress conditions.
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