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Basic applications

Another significant factor in a reliable operation is the basic application of the equipment. One could hope that the previous chapters have helped you avoid some of the application pitfalls. It is certainly true that no matter how well a compressor or its ancillary equipment is designed, if it is not properly applied, the results can be disastrous. [Pg.468]

Other areas such as static electricity and its use and control were not discussed since they represent a different type of application (2). As new materials became available and the electrical art continued to develop, the uses for plastics in electrical applications has increase both in the basic application as a dielectric and in special applications using the special intrinsic properties of the plastics. [Pg.229]

Chapters 4, 5, and 6 discuss basic applications of importance to chemists. In all cases the eigenfunctions and eigenvalues are obtained by means of raising and lowering operators. There are several advantages to using this ladder operator technique over the older procedure of solving a second-order differ-... [Pg.361]

The Emrys Creator is the basic application tool for reactions on a 0.5-5.0 mL scale. The Emrys Optimizer allows for automation with integrated robotics so that... [Pg.47]

These requirements considerably restrict the selection of pigments for oven drying systems. The complex nature of the problem makes it necessary to submit any pigment which is basically applicable to a pilot experiment under the exact processing conditions. [Pg.156]

In fact, the limits of residue on ignition are basically applicable to the following two categories of pharmaceutical substances, namely ... [Pg.21]

In this work, we presented the 2D MMl couplers as a basic component for 3D integrated optics. Two basic applications of the 2D MMl, the power splitter and 3D MMl PHASAR, are studied and compared to their planar equivalent. The simulations show an appreciable performance enhancement in both cases. These promising devices open the door to multilevel integrated optical circuits with higher packing density and better performance. [Pg.286]

Exploration of the scope of NPS in electrochemical science and engineering has so far been rather limited. The estimation of confidence intervals of population mean and median, permutation-based approaches and elementary explorations of trends and association involving metal deposition, corrosion inhibition, transition time in electrolytic metal deposition processes, current efficiency, etc.[8] provides a general framework for basic applications. Two-by-two contingency tables [9], and the analysis of variance via the NPS approach [10] illustrate two specific areas of potential interest to electrochemical process analysts. [Pg.94]

The vendor claims that this technology will have four basic applications (1) on-site stabilization of high-level liquid radioactive waste (2) development of cheaper thermal and electrical energy sources (3) creation of scarce elements from more plentiful elements and (4) design and fabrication of table-top particle accelerators. [Pg.541]

My colleague Todd wrote a Visual Basic application that selected a random word in hisMerriam-Webster Dictionary. His ten random words reminded him of a brilliant mystery novel ... [Pg.53]

Drum diameters are typically 762, 914, or 1219 mm, all of which have been used in the various basic applications. In some instances, standardization of diameter is specified because of maintenance considerations. Because these separators are constructed more ruggedly and require repulping stages, capital costs are higher than heavy-media separators. Costs in 1995 were approximately 10,000/m of width for single-drum modules and multiples of the single-drum module. [Pg.425]

As mentioned in Section 7.1, if we determine the molar conductivity of an electrolyte as a function of its concentration and analyze the data, we can get the value of limiting molar conductivity A°° and quantitative information about ion association and triple-ion formation. If we determine the limiting molar conductivity of an ion (7 °) by one of the methods described in Section 7.2, we can determine the radius of the solvated ion and calculate the solvation number. It is also possible to judge the applicability of Walden s rule to the ion under study. These are the most basic applications of conductimetry in non-aqueous systems and many studies have been carried out on these problems [1-7]. [Pg.216]

When we decode a cookbook, every one of us is a practicing chemist. Cooking is really the oldest, most basic application of physical and chemical forces to natural materials. [Pg.108]

Eyring and Steam made the first study of the probability that the proton would have enough energy to climb over the potential-energy barrier. The basic application of the theory of absolute reaction rates made by Eyring begins with the eqiwtion for the frequency at which the proton crosses the barrier, i.e., the rate constant k... [Pg.573]

During the past decade, several fundamental transformations of C-H bonds to other synthetically valuable bonds have been developed, and some basic applications of the catalytic functionalization of C-H bond to synthesis of polymers and the catalytic functionalization of natural products have been studied. During the next decade however, it is likely that fascinating developments will continue to be made in the direct use of C-H bonds in organic synthesis. [Pg.252]


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See also in sourсe #XX -- [ Pg.19 ]




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