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Keeping Out Of Trouble

It is well known that one of the best means for keeping out of trouble and to remain in compliance means that it is essential to control or monitor a process in a well-established chemical works, or in the most chaotic situation which result from warfare, or natural or other man-made disasters [58]. [Pg.223]

As a result, it did not seem appropriate to unduly jeopardize faithful readers who, at this time, possessed insufficient skills to keep themselves from being splattered all over the walls. On the other hand, if a maker of C-4 knew where to purchase commercial caps, he would—the reasoning went—also have the expertise needed to stay out of trouble should he actually decide to go ahead and fire his home brew off. [Pg.3]

Here s the question you ve been dreading. Using the reactivity ratios and initial molar concentrations given in Table 6-4, write a program to obtain plots of copolymer composition as a function of conversion, lA, lB, and x at chosen concentrations, and also the number fraction of A and B sequences. Compare and contrast the results obtained from all four examples by constructing a table of values of these quantities for polymer chains formed from equimolar concentrations of the monomers. That should keep you out of trouble for a while ... [Pg.165]

A common trap during project execution, especially when dealing with large EPC contractors, is control overkill. Many contractors will flaunt their "unique" control systems guaranteed to keep any project out of trouble. Most of these systems far exceed the requirements of small, even conventional, projects, and none will keep them out of trouble in the absence of qualified and experienced project management. [Pg.211]

If you look up the solubility of water in ethanol (or ethanol in water), you find an [8], This means they mix in all proportions. Any amount of one dissolves completely in the other—no matter what. Any volumes, any weights. You name it. The special word for this property is miscibility. Miscible solvent systems are the kinds you should use for mixed solvents. They keep you out of trouble. You ll be adding amounts of water to the ethanol, and ethanol to the water. If the two weren t miscible, they might begin to separate and form two layers as you changed the proportions. Then you d have REAL trouble. So, go ahead. You can work with mixtures of solvents that aren t miscible. But don t say you haven t been warned. [Pg.129]

Don t try to rescue or protect them from consequences they have caused (bailing them out of trouble, for example) because you keep them from learning the hard lessons bad experience has to teach. [Pg.42]

By using common sense, you can help keep your back out of trouble. Eveiy time you think about lifting, think defensively about your back and the possibility of a back sprain. Follow good hfting techniques, not only at work, but also at home. [Pg.253]

My child s/cbildren s life would be really better 6 months from now if If they had activities to keep them busy and out of trouble if these activities occur after school. [Pg.289]

I think Rich I agree more than we disagree. If you use his definition of validation then what he says follows. However, that definition is not the one in common use - the MUCH more common definition is simply the one that tells you to separate your calibration samples keep some out of the calibration calculations, then use those to validate. Once you ve gone to the trouble to collect data over time then your options expand greatly. Not only can you use that data for ongoing validation, you can also include those new readings in the calibration calculations. There are at least two ways to do this ... [Pg.137]

Keep a look out for all sorts of trouble. You will have thevizio with you The Maestro chuckled as he heaved himself to his feet. Be very careful. He is dangerous. ... [Pg.142]

Quite often a problem appears unexpectedly from a user, but not from developers of a simulation tool, and it is hard for the developers to predict the problem at the development stage. The problem is dependent quite often on the user s misuse of the tool. Therefore, reliability and severity tests of a simulation tool become very significant. For example, the EMTP Cable Constants had taken nearly 10 years to carry out the reliability and severity tests with more than tens of thousands of cases. It should be noted that the reliability of a tool, that is, the probability of trouble occurrence, is proportional to the number of elements, that is, the number of subroutines and options, even though each element keeps very high reliability. Also, the input data often cause numerical instability when the data physically do not exist. This trouble relates to the assumption of formulas adopted in the simulation tool as explained in the previous section. To avoid such trouble, a "KILL CODE" is prepared in the EMTP. The kill code is to judge whether the input data are beyond the assumphon and the limit. It might be noteworthy that nearly half of the EMTP codes are kill codes. This might be considered in another simulation tool. [Pg.475]

Somewhat disingenuously. Bond later told the superintendent of schools that I did not discuss the trouble either with Negroes or with white people, but tried to keep entirely out of it. Bond to D. H. Stringfield, January 19, 193 5> part 2, reel 30, Bond Papers. [Pg.181]


See other pages where Keeping Out Of Trouble is mentioned: [Pg.24]    [Pg.86]    [Pg.86]    [Pg.88]    [Pg.90]    [Pg.143]    [Pg.24]    [Pg.86]    [Pg.86]    [Pg.88]    [Pg.90]    [Pg.143]    [Pg.845]    [Pg.104]    [Pg.394]    [Pg.234]    [Pg.141]    [Pg.73]    [Pg.352]    [Pg.179]    [Pg.26]    [Pg.44]    [Pg.216]    [Pg.19]    [Pg.104]    [Pg.337]    [Pg.4]    [Pg.193]    [Pg.214]    [Pg.109]    [Pg.189]    [Pg.189]    [Pg.193]    [Pg.144]    [Pg.107]    [Pg.256]    [Pg.172]    [Pg.520]    [Pg.420]    [Pg.100]    [Pg.126]    [Pg.71]    [Pg.465]   


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