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T -rule

The idea behind the production rule is now, to produce the known orders that should be delivered within a certain number of periods, T say, if the number of penalty points of the type is large enough, for instance, at least x. If several types are competing for the same capacity, capacity is allocated to the types according to a decreasing number of penalty points. If capacity has been allocated to one or more types and the remaining available capacity is too small to make an allocation to one of the other [Pg.83]

1) Because of the conq etition with the other types, there is not always capacity available for a type for which the nuniber of penalty points would justify a setup. Therefore, it will be wise to choose the penalty points and the level x,- in such a way that, if they were chosen the same in the uncapacitated situation, they would lead to a more frequent production. [Pg.84]

The elements sketched above will give an indication for the choice of the penalty points and the required minimum x,. Finding a good choice will now be a question of trial-and-error combined with some intuition. Now we will describe the extended (x,7 -rule for a given set of penalty points, with fj, i=l.M, j=l.N, the penalty points for an order of type i with a residual lead time of J periods. We also assume that the values for T,-, i=l,2.M are determined according to the uncapacitated (x,7 -nile according to the method described in 4.2.4.4. [Pg.85]

If K i) Xi for all i, then we do not produce at all during the period. Otherwise, we determine the sequence of types ii,h.ik with in which the types with a sufficient amount of penalty points are placed according to a decreasing amount of penalty points, X (ji) (j2. . (i ). Types with an equal number of penalty points are placed according to an increasing average demand. In the uncapacitated situation we would produce all the types in this sequence and the amount for type i/ would be  [Pg.85]

In the multi-type capacitated situation the actions may be different. We start with a capacity allocation of max(C,a,-,+S) for type i leading to a remaining capacity Ci=C-a,-,-S or Ci=0. If the remaining capacity is less than a certain minimum capacity level me/, the remaining capacity will not be spent on a set-up and an allocation for the following type in the sequence. The idea is that in the situation in [Pg.85]


III. Rules for Construc tion of Nuclear Power Plant Components IV Heating Boilers V Nondestructive Examination T. Rules for Care and Operation of Heating Boilers TI. Guidelines for the Care of Power Boilers... [Pg.1022]

Keep in mind the temperaments and personalities of the people you want on the team, but don t make this a primary criterion for selection. For example, lone wolves can sometimes be prickly, but they may offer unique insights. And don t rule out known adversaries just because they don t like each other despite their differences they may well offer individual contributions. [Pg.51]

Regie,/. administration management, regicren, v.t. rule, govern, regulate, manage. — v.i. rule, reign. [Pg.361]

Totalistic Rules Totalistic (T) rules, 0tot, are functions of the sums of values of all sites in a particular neighborhood 0tot = 0tot(Zlj=, . Here we define the... [Pg.44]

In table 5.2, we list the maximal numbers of possible cycle states CotI Ct for OT and T rules, respectively, the total number of possible distinct state transition topologies (including trees), fd iGc), and the number of equivalence classes Q, for small N in T 2. The number of possible state transition topologies is evidently much smaller than the number of distinct connected topologies (= , [cvet79]). Note that the sets Cot and Ct are the same for even-N, while for odd-N, Cot is the same as Cot for N — 1) (since... [Pg.267]

Table 5.2 Number of topologically distinct connected graphs ) ), number of cyclic equivalence classes Q, maximal numbers of possible cycle sets Cot and Ct for OT and T rules, respectively, and the maximal number of possible distinct topologies of the state transition graph, calculated for graphs with size fV=5,6,..., 12 in T 2. ... Table 5.2 Number of topologically distinct connected graphs ) ), number of cyclic equivalence classes Q, maximal numbers of possible cycle sets Cot and Ct for OT and T rules, respectively, and the maximal number of possible distinct topologies of the state transition graph, calculated for graphs with size fV=5,6,..., 12 in T 2. ...
As a result of this way of counting nodes the 4s orbital has a lower total number of nodes, that is, 4 when compared with 5 in the case of the 3d orbital. Moreover, this order agrees with the experimentally observed order whereby 4s has lower energy than 3d.10 However, whether this is a satisfactory first principles explanation of the n + t rule, which meets the Lowdin challenge, is something that seems rather unlikely given the ad hoc nature of the manner in which nodes have been counted. [Pg.137]

Huo bowed his head, jowls folding over his collar like glazed pastry. The sweat glistened on his skin in the shifting light. We can t rule out some sort of neural shield, Lord Mogushestvo. Something that deflected and amplified the effects of the scalpel. ... [Pg.62]

He glanced at Wargaard and his aide, both of them watching and listening in very apparent bewilderment. What I am offering - all I am offering, the Doctor pressed on, is a lift to another planet. In your present time. It s possible the rules that bind you to this time won t rule out a spatial hop in... [Pg.199]

Temperature rule (T-rule). Temperature increase (decrease) favors endothermic (exothermic) reactions. Since the total T-dependence is determined by a combination of formation energies, the final result is not always obvious. However, usually, the defect concentrations rise with increasing temperature. [Pg.29]

The n + t rule governs the order of increasing energy of the electrons in the atom. Subshells are filled with electrons in the order of increasing + , with due regard for the limitations on the quantum numbers and for the Pauh exclusion principle. In each case, the last electron can be added to the configuration of the element before, using a procedure known as the build-up principle. (Section 4.4)... [Pg.133]

Poorly-crystalline Al-arsenate 740 887 v(As-OAl) v(As-O) Useful as model for chemisorbed As on gibbsite. but since structure is unknown, can t rule out presence of protonated As(V). Myneni etal. (1998)... [Pg.56]

Bevan We can t rule that out, because we haven t checked the L a- levels. One can get a similar down-regulation of the Na+ current in these cells by short-term treatment with veratradine. [Pg.157]

Cummins This doesn t rule out the possibility that phenytoin might also have an effect somewhere else as a mode shifter. [Pg.184]

CatteraU It doesn t rule that out, but it does say that at the concentrations at which it is anticonvulsant it is binding to the site that blocks Na channels. [Pg.184]

Stereochemistry of the Aldol Condensation. The aldol condensation displays high selectivity towards Zs-olefins as a consequence of the trans-anti-penp sina.T rule. It is worthwhile digressing at this point to look at this mechanism in more detail as, by doing so, we can learn how to achieve the opposite selectivity. A typical aldol condensation is shown in Figure 6.4. [Pg.140]

When the sample period is over, the sample container should be disconnected from the sampler and carefully checked for leaks. Plugs or caps should be installed on the valves. The sample information tag should be filled out fully. The cylinder should then be put into a proper case for transport. D.O.T. rules apply, even in your company trucks and autos. A cylinder should never be transported haphazardly. [Pg.75]


See other pages where T -rule is mentioned: [Pg.61]    [Pg.279]    [Pg.134]    [Pg.108]    [Pg.261]    [Pg.271]    [Pg.289]    [Pg.446]    [Pg.398]    [Pg.50]    [Pg.181]    [Pg.68]    [Pg.204]    [Pg.85]    [Pg.85]    [Pg.51]    [Pg.239]    [Pg.485]    [Pg.36]    [Pg.9]    [Pg.209]    [Pg.377]    [Pg.117]    [Pg.186]    [Pg.209]    [Pg.89]    [Pg.89]    [Pg.114]    [Pg.209]    [Pg.358]    [Pg.202]   


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Analysis of the multi (x,T)-rule

Extended (x,T)-rule

Extended overtime (x,T)-rule

Formulation of the extended overtime (x,T)-rule

The (x,T)-rule

The multi (x,T)-rule

Van t Hoff rule

Van’t Hoffs rule

Van’t Hoff’s rule

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