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The viscoelastic behavior was discussed for ideal suspensions consisting of spherical particles with hard-core potential between them.
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Their behavior is discussed for testing conditions of interest for clinical application.
The possible mechanism for this behavior is discussed above for Fig. 7-1(b).
Possible explanations for this behavior are discussed, that may provide guidelines for the design of second-generation paramagnetic liposomes as contrast agents.
The reasons for this behavior are discussed on the basis of the mechanism for the photocatalytic oxidation of toluene.
The local stage for the beam behavior is discussed in detail and the required improvement for the LIM methodology is described.
The physical mechanisms responsible for this behavior are discussed, and a model based on grain boundary plasticity is presented for the strengthening behavior.
The implications of these differences for mechanical behavior are discussed.
The dynamical explanation for this behavior is discussed in the next section.
A possible explanation for this behavior is discussed through the incorporation of a threshold stress.
The crystallographic, microstructural and micromechanical mechanisms for hydride behavior were discussed.
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