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The displacement is decomposed into a coarse and a fine scale.
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The interface forces and displacements are decomposed in terms of a set of interface basis functions.
The in-plane displacement vector is decomposed as the sum of displacements for irrotational and isochoric waves in a two-dimensional medium.
To identify the asymmetrical displacement, the beam response is decomposed into three vibration modes.
The displacement of the element is decomposed into the rigid-body part and the deformational part, as shown in Fig. 2. The rigid-body displacement includes two parts, a translation (from 12 ‾ to 1 ˆ 2 ˜ ‾ ) and a rotation (from 1 ˆ 2 ˜ ‾ to 1 ˆ 2 ˆ ‾, described by the angle α).
Similarly, (B_{m}) is decomposed.
Next, it is decomposed into smaller subsystems.
ATP is decomposed into AMP which is further decomposed into 5′-inosinate.
(b) The shear displacement can be decomposed into shear deformation of the soil and sliding at the interface.
The latter process is represented by jumps in the displacement vector field that can be decomposed into tangential ("slip") and normal ("stretch") components.
By Helmholtz decomposition, the displacement fields of the elastic layers are decomposed into three scalar potentials.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com