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There are two main classes of solids: crystalline and amorphous.
The discussion is organized according to classes of solids, highlighting the diverse target systems that are accessible using similar chemical concepts: metals, oxides, chalcogenides, phosphides, alloys, intermetallic compounds, sulfides, and nitrides.
Overview of electromechanical (piezoelectric, ferroelectric, electrostrictive) properties of materials representing different classes of solids (pure piezoelectrics, ferroelectrics, ferroelastics and higher order ferroics, crystals, ceramics, composites, thin films, and so on) and macroscopic description of how their electromechanical features relate to other macroscopic properties.
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Finally, relevant CO2 adsorption (or equilibrium) capacity data, and cyclic adsorption/desorption performance and stability of important classes of solid amine sorbents are critically reviewed.
Moreover, during the last 15 years new classes of solid adsorbents have been developed, such as activated carbon fibres and carbon molecular sieves, fullerenes and heterofullerenes, microporous glasses and nanoporous — both carbonaceous and inorganic — materials.
Stromal response is becoming increasingly recognized as a marker of invasion and poor clinical outcome in several different classes of solid tumors [ 16- 20].
There exists a class of solids called network solids in which the bonding is essentially due to a network of covalent bonds that extends throughout the solid.
Based on this work, it is clear that graphite is a member of a larger class of solids––kinking nonlinear elastic solids––that includes the Mn+1AXn phases, layered silicates, nonlinear mesoscopic elastic solids, among others.
The ternary carbide Ti2AlC is a member of a large class of solids recently classified as kinking nonlinear elastic (KNE) solids because they deform primarily by the formation of kink bands.
Employing a phenomenological double-potential, elastic/thermoviscoplastic constitutive framework, the intrinsic dissipation form and heat equation considered correspond to salient features of inelastic behaviour of a large class of solids.
A large class of solids, including certain metals and polymers, when subject to significant deformations undergo microstructural changes that engender a response that is distinctly different from that before which the microstructural changes occurred.
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