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Transducers substrates

The systematic improvement of sensor performances, failure analysis, and unequivocal understanding of chemical sensing in this next R+D step requires a complete control of chemical compositions, geometrical arrangement of atoms and of electronic and dynamic structures with particular emphasis on the structure of the interfaces to the gas phase and to the transducer substrate... [Pg.89]

Fig 4. Schematic diagram of transducer bonded to conducting substrate (not to scale). [Pg.718]

Bellows Nickel bellows can be made by electrodeposition onto a grooved cylinder. In this case, the nickel coating cannot be slid off, and so the substrate must be removed destructively. The grooved cylinders or mandrels are frequently of aluminium alloy which is dissolved away in caustic alkali when the nickel deposition is completed. Uses include pressure switches, flexible couplings, and pressure transducers . [Pg.542]

Protein kinase C (PKC) is an enzyme family whose members are activated by agonists that cause receptor-mediated generation of lipid second messengers. The activated enzymes transduce information from such agonists by phosphorylating relevant downstream substrates. [Pg.1006]

PKC is a family of enzymes whose members play central roles in transducing information from external stimuli to cellular responses. Members of this family of serine/ threonine kinases respond to signals that cause lipid hydrolysis. PKC isozymes phosphorylate an abundance of substrates, leading to both short-term cellular responses such as regulation of membrane transport and long-term responses such as memory and learning. [Pg.1006]

Give example of an enzyme electrode based on an ion-selective electrode transducer. What is the relationship between the substrate concentration and the potential response ... [Pg.202]

D.J. Harrison, K. Fluri, N. Chiem, T. Tang, and Z. Fan, Micromachinng chemical and biochemical analysis and reaction systems on glass substrates. Proceedings Transducers (Stockholm, Sweden) 752— 755 (1995). [Pg.406]

What are the main error sources in PAC experiments One of them may result from the calibration procedure. As happens with any comparative technique, the conditions of the calibration and experiment must be exactly the same or, more realistically, as similar as possible. As mentioned before, the calibration constant depends on the design of the calorimeter (its geometry and the operational parameters of its instruments) and on the thermoelastic properties of the solution, as shown by equation 13.5. The design of the calorimeter will normally remain constant between experiments. Regarding the adiabatic expansion coefficient (/), in most cases the solutions used are very dilute, so the thermoelastic properties of the solution will barely be affected by the small amount of solute present in both the calibration and experiment. The relevant thermoelastic properties will thus be those of the solvent. There are, however, a number of important applications where higher concentrations of one or more solutes have to be used. This happens, for instance, in studies of substituted phenol compounds, where one solute is a photoreactive radical precursor and the other is the phenolic substrate [297]. To meet the time constraint imposed by the transducer, the phenolic... [Pg.201]


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See also in sourсe #XX -- [ Pg.125 ]




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