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Group matrix

Interesting properties and applications have been reported so far. Liquid crystalline crowns can be used as sensors for salts or even chirality. Luminescence can be observed when choosing appropriate metals for complexation. Supramolecular structures such as channels and wires are readily available. Combined with polymerizable side groups, matrix- or membrane-bound supramolecular structures can be obtained. [Pg.189]

Enzyme complex Mass (kd) Subunits Prosthetic group Matrix side Membrane core Cytosolic side... [Pg.750]

Ouracter strong WaMCak Trade name Manu facturcr Active group Matrix Effective pH Selecliviiy Order of selectivity Total exchange capacity meq/ml Total exchange capacity meq/gm Maximum thermal stability C Physical form s sphere b beads Standard mesh range lonk form as shipped Shipping density lb./cu. ft. [Pg.2573]

Commercial name Functional groups Matrix composition and structure Total capacityOperating temp.Beads mean size (eq/L) (°C) (mm) ... [Pg.47]

R. L. Bobsein, M. L. Stone, and J. F. Geibel. Reinforced plastic comprising poly(arylene sulfide sulfone) polymer containing ether groups matrix. US Patent 5 024 876, assigned to Phillips Petroleum Company (Bartlesville, OK), June 18, 1991. [Pg.275]

Dendrimer type End group Matrix Ion suppression Solvent system References... [Pg.139]

However, another approach is to combine the PCA scores and spectral residuals for each spectrum and use them all for the Mahalanobis group matrix calculations. These values are effectively included in the Mahalanobis group calculations by adding an extra score for each spectrum that... [Pg.177]

Another well-known case is when only chemical interactions exist between the dispersed phase, the polymer or polymer matrix material and the compatibiliser. One of the criteria of chemical compatibilisation is the existence of free functional groups, which can react with each other during compatibilisation. It is important to note that the presence of free functional groups is not often associated with the development of chemical interactions due to steric hindrance reasons the compatibilising functional groups, matrix and functional groups of the dispersed phase cannot react with each other, i.e., the interactions occur at the boundaries. One typical example of chemical compatibilisation is the so-called in situ functionalisation. In this case, surface modification of the matrix and dispersed phase occur first, and then the modified surfaces are linked via in situ connections [51-53, 75, 76]. [Pg.223]

Rosenbusch has shown that there are three groups of E. coli strains, based on the extractability of matrix protein at 60°C in 2% SDS. In one group, matrix protein cannot be solubilized at all under these conditions. In another group, it is partially solubilized, and in the third group of E. coli strains, the protein is almost completely soluble under the same conditions. [Pg.357]


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See also in sourсe #XX -- [ Pg.401 ]




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