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Exact(5)
In this paper, the damping effect of granular materials is explored to reduce the vibration and noise of mechanical structures.
The importance of the nature of acceptor moiety in tuning the charge transport properties of the synthesized materials is explored.
The influence of inter-particle resistance between the active materials is explored to determine its influence on the discharge properties of the electrode.
In the present article, roughness-enhanced toughening of a cohesive interface between two identical materials is explored with a pure sinusoidal interface morphology that is characterized by its aspect ratio or ratio of amplitude to wavelength.
Biot's model of wave propagation in porous isotropic materials is explored for predicting ground vibration from rail vehicles on vertically heterogeneous isotropic saturated soil and rock using seismic reflectivity methods combined with a multi-degree-of-freedom model of a transit vehicle bogie.
Similar(55)
The pertaining formation mechanisms for both materials are explored.
In this chapter, materials processing routes that involve the deformation of solid engineering materials are explored.
The electrochemical properties of the synthesized materials were explored at room and high temperatures.
To this end, the potential of polycarbonate polymers as such materials were explored.
The correlation between the surface characteristics and the friction behavior of clutch materials was explored.
Magnetic properties of various G-FRP Dewar-purpose materials are explored with a χ-meter furnished with a RF SQUID magnetometer.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com