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If a material is modeled as a lattice where points have a probability for being open and allowing liquid to flow through, there is a critical probability at which a liquid can percolate across the lattice.
The material is modeled as a nonhomogeneous isotropic elastic medium.
The material is modeled as a finitely deforming elastic plastic solid.
The material is modeled as a microstructure in a periodic unit cell.
The rockbolt material is modeled by the elastic, linear strain-hardening behavior.
Therefore, the sand material is modeled using a constitutive model with a Mohr Coulomb failure criterion incorporating damage.
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Gas and inert material were modeled in an Eulerian fashion.
In this work, laser shock experiments on composite material are modeled.
The analysis is carried out in time domain, the material being modeled by the standard linear viscoelastic solid model.
Moreover, boThedefects yincorporation–shifted of the energy gap for non-polar (10̅10) Snrface, which suggests that the Sn-dopantZnO in a potential alternative candidate for fabricating efficient transparent electrode application.
The cyclic plastic behaviour of the material was modeled using stress-strain curves obtained in low-cycle fatigue tests.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com