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Specific force 2 BIOS

Berthelot s characteristic product 2 BIOS—B106 absolute temp of expln 2 BIOS specific force 2 BIOS... [Pg.491]

It is likely that in gas phase biosensor s water of hydration is retained in the immobilised structure, since none of authors used forceful drying procedures. It is possible that this water is sufficient to allow the bio-component to act to some extent as if it were in solution. Thus the sensors respond in an expected manner as they would in solution, but with an obvious difference in magnitude of response and activity. Even dry air contains 5 ppm or more of water, which is considered sufficient for the activity of the antibody or enzyme [78]. Partial humidification of the carrier stream has also been suggested so as to retain the behaviour of the biologically active coatings [79]. This area has been specifically reviewed elsewhere [80,81] and also discussed in general Pz biosensor reviews [82-84]. [Pg.261]

Sensitivity analysis is also a tool that can help to refine potential energy functions for (bio)molecular simulations. Sensitivity analysis can help one decide whether a specific feature needs to be included in a potential function for describing a specified set of properties of a given class of molecules. For example, because point charge models are commonly used in bio(molecular) modeling, it is useful to inquire whether a dispersed charge representation would improve the description of intra- and intermolecular electrostatic interactions. One study of this type was carried out by Zhu and Wong," ° who included in the force field a squared Lorentzian function f r - f/ ) of the form... [Pg.318]

More specifically, non-covalent interactions are of paramount importance in chemistry and especially in bio-disciplines [34, 35], since they setup the force field scenario through which chemical species interact with each other without a significant electron sharing between them. They represent, in fact, the machinery... [Pg.494]

The conceptual theme of hierarchically stractured materials that are specifically designed to maximize anode or cathode performance can be separately considered in the following components (1) the bulk electrode materials, (2) pores in the bulk material that accommodate fluid flow, (3) mesoporous or structural material to transition from the bulk material to the nanometric dimensions, (4) the nanostmctured transducer, (5) the bio-nano interface, and (6) the biocatalyst (Figure 10.1) [23]. All of the elements must be coupled to achieve electron flow from the electron donor through the architecture to the final electron acceptor. In the anodic half-cell, fuel is oxidized and the liberated electrons are transferred to the electrode and through an external load. The cathode provides the BFC with electromotive force by catalyzing the reduction of oxygen at relatively positive potentials. [Pg.182]


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See also in sourсe #XX -- [ Pg.106 ]




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