Exact(1)
This paper deals with updating of the finite element model using the FRF data with damping identification using complex modal data and its subsequent use for predicting the effects of structure modifications.
Similar(59)
The precise result of the chaperone interaction seems to vary with the individual client proteins and examples of effects on structure, modification, protein interactions and localisation have all been reported ( reviewed in [2]).
This paper presents studies that deal with updating of a finite element model of a structure and its subsequent use for predicting the effects of structural modifications.
This paper deals with updating of a finite element model of a structure and its subsequent use for predicting the effects of structural modifications.
Chromatin accessibility approaches measure directly the effect of chromatin structure modifications on gene transcription, in contrast to histone chromatin immunoprecipitation with NGS (ChIP-seq) (for a thorough review on ChIP-seq read [ 31– 33]) where such effects must be inferred by presence or absence of overlapping histone tail modifications.
It is concluded that the updated models that are closer to the structure physically are likely to perform better in predicting the effects of structural modification.
The structure of hydrocyclone was designed with a series of modifications, and the comprehensive effects of the structural modifications on operation performance indices of hydrocyclones were investigated experimentally with orthogonal design method.
Furthermore, the effects of various structural modifications on biological activity are investigated and biological activities of novel structures are estimated using the developed QSAR model.
The effects of various structural modifications on biological activity are investigated and novel structures are designed using the developed in silico model.
Effects of structure.
The coexpression of physically adjacent genes may be caused by the long range effect of transcription factors, chromatin structure modifications, or increased concentration of components of the transcriptional machinery (such as transcription factors) in a particular subnuclear location of chromosomal segments [ 18].
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