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Titlebook: Chemical Sensors; T. E. Edmonds Book 1988 Springer Science+Business Media New York 1988 biological.chemical sensor.chemistry.development.i

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Produktions- und Logistikmanagementcompass an enormous structural variety and complexity. They may be organic, inorganic or organometallic; they may consist of an assembly of discrete linear or branched molecules with a distribution of molecular sizes; or, at the other extreme, they may be virtually infinite three-dimensional network
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eBusiness und Wissensmanagementry could be analytically useful. However, it was not until the introduction of a practical, reproducible working electrode, the dropping mercury electrode (DME), that the analytical utility of the technique was realised. The DME alleviated problems associated with surface phenomena which complicated
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Wertschöpfung durch Produktion und Logistikanalyte. Many types of electrodes exist (see Table 9.1), but those based on membranes are by far the most useful analytical devices. The broader field of potentiometry has been reviewed recently (1). The potential of the indicator electrode cannot be determined in isolation, and another electrode (a
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https://doi.org/10.1007/978-3-642-57268-5 Lundstrom (1) in 1975. Work since then has been based mainly on MOS devices having various transition-metal gate electrodes, primarily for the sensing of hydrogen-containing gases, although some work has been reported on the sensing of carbon monoxide with these devices. These sensors are based on
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,Management der Anwenderunterstützung,zards encountered and the number of instruments available from many different manufacturers are increasing annually. However, the vast majority of these instruments use the same principles of detection and hence have many features in common. The purpose of this chapter is to describe these features
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