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This uncertainty provides complexity in modeling the behavior of such materials.
However, the behavior of such materials subjected to photomechanical patterning is not well understood.
The underlying idea is to build an efficient method for analyzing the hydro-mechanical behavior of such materials.
The experimental characterization of graphene/polymer nanocomposites is a challenging process, and hence, computational approaches for predicting the behavior of such materials have also extensively been employed.
Although the mechanical behavior of granular materials of various types have been studied extensively for several decades, the dynamic behavior of such materials remains poorly understood.
Modeling the behavior of such materials in geotechnical engineering applications is complex and sometimes beyond the ability of most traditional forms of physically-based engineering methods.
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The present, experimental and numerical work studies the microstructural hygro-thermal behavior of such material.
It is, thus, important to evaluate the corrosion and the wear behaviors of such materials for biosecurity considerations in the human body.
One of the challenging tasks is development of models of mechanical behavior for such materials since precision of the obtained numerical results highly depends on level of consideration of features of their heterogeneous microstructure.
Equally important is the impact of such materials on the behavior of concrete beams as a combination of steel and concrete.
We find that these physical characteristics play significant roles in determining the mechanical behavior of composites, suggesting that the properties of such materials can be tailored via proper composites engineering and design.
More suggestions(17)
behavior of such proteins
behavior of such joints
behavior of such rocks
behavior of incompressible materials
behavior of such errors
behavior of such beams
behavior of ceramic materials
behavior of such particles
behavior of viscoelastic materials
behavior of such voters
behavior of pure materials
behavior of such composites
behavior of such creatures
behavior of such fuels
behavior of different materials
behavior of such conductors
behavior of such tissues
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