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Forward chaining

Most expert systems are developed via specialized software tools called shells. These shells come equipped with an inference mechanism — backward chaining, forward chaining, or both — and require knowledge to be entered according to a specified format. We will have a closer look at several tools for developing expert system in this chapter. [Pg.35]

The expense is justified, however, when tackling polymer chains, where reconstruction of an entire chain is expressed as a succession of atomic moves of this kind [121]. The first atom is placed at random the second selected nearby (one bond length away), the third placed near the second, and so on. Each placement of an atom is given a greater chance of success by selecting from multiple locations, as just described. Biasing factors are calculated for the whole multi-atom move, forward and reverse, and used as before in the Metropolis prescription. For fiirther details see [122, 123. 124. 125]. A nice example of this teclmique is the study [126. 127] of the distribution of linear and branched chain alkanes in zeolites. [Pg.2266]

The main experimental techniques used to study the failure processes at the scale of a chain have involved the use of deuterated polymers, particularly copolymers, at the interface and the measurement of the amounts of the deuterated copolymers at each of the fracture surfaces. The presence and quantity of the deuterated copolymer has typically been measured using forward recoil ion scattering (FRES) or secondary ion mass spectroscopy (SIMS). The technique was originally used in a study of the effects of placing polystyrene-polymethyl methacrylate (PS-PMMA) block copolymers of total molecular weight of 200,000 Da at an interface between polyphenylene ether (PPE or PPO) and PMMA copolymers [1]. The PS block is miscible in the PPE. The use of copolymers where just the PS block was deuterated and copolymers where just the PMMA block was deuterated showed that, when the interface was fractured, the copolymer molecules all broke close to their junction points The basic idea of this technique is shown in Fig, I. [Pg.223]

Every alternating atom in the PDMS chain is the electronegative oxygen, which makes it a polar polymer. The authors observed that at low loadings of PDMS, PVC is destabilized. This is to be expected according to the alternative model for degradation and stabilization of PVC put forward by Naqvi. But for compositions with 50% or more PDMS, both polymers are stabilized. No possible explanation can be given for this reversal in thermal stability at this time. [Pg.332]

Figure 3-43. Oil delivered to a chain by forward (a) and reverse (b) rotating shafts [8]. Figure 3-43. Oil delivered to a chain by forward (a) and reverse (b) rotating shafts [8].
Step 4 of Figure 29.3 Chain Cleavage Acetyl CoA is split off from the chain in the final step of /3-oxidation, leaving an acyl CoA that is two carbon atoms shorter than the original. The reaction is catalyzed by /3-ketoacyl-CoA thiolase and is mechanistically the reverse of a Claisen condensation reaction (Section 23.7). In the forward direction, a Claisen condensation joins two esters together to form a /3-keto ester product. In the reverse direction, a retro-Claisen reaction splits a /3-keto ester (or /3-keto thioester) apart to form two esters (or two thioesters). [Pg.1136]

Scheme 1). Introduction of a jt bond into the molecular structure of 1 furnishes homoallylic amine 2 and satisfies the structural prerequisite for an aza-Prins transform.4 Thus, disconnection of the bond between C-2 and C-3 affords intermediate 3 as a viable precursor. In the forward sense, a cation ji-type cyclization, or aza-Prins reaction, could achieve the formation of the C2-C3 bond and complete the assembly of the complex pentacyclic skeleton of the target molecule (1). Reduction of the residual n bond in 2, hydro-genolysis of the benzyl ether, and adjustment of the oxidation state at the side-chain terminus would then complete the synthesis of 1. [Pg.466]

For addition-fragmentation chain transfer, the rate constants for the forward and reverse reaclions are defined as shown in eqs. 21 and 22 respectively. [Pg.504]

Mate and Novotny [42] studied the conformation of 0.5-13 nm thick Z-15 on a clean Si (100) surface by means of AFM and XPS. They found that the height for PFPE molecules to extend above a solid surface was no more than 1.5-2.5 nm, which was considerably less than the diameter of gyration of the lubricant molecules ranging between 3.2-7.3 nm. The measured height corresponds to a few molecular diameters of linear polymer chains whose cross-sectional diameter is estimated as 0.6-0.7 nm. The experimental results imply that molecules on a solid surface have an extended, flat conformation. Furthermore, they brought forward a model, as shown in Fig. 28, which illustrates two... [Pg.226]

As the synthetic approach to polydichlorophosphazene put forward by R. De Jaeger has been already described in several recent review articles [10,38,57, 172], in this paper we will illustrate only the polycondensation approach proposed by I. Manners and H. R. Allcock, together with the consequences of this reaction on the preparation of chain phosphazene copolymers (block copolymers) [220,223,224,232-234,240], and star polymers [222]. [Pg.176]

Traditional amphiphiles contain a hydrophilic head group and the hydrophobic hydrocarbon chain(s). The molecules are spread at molecular areas greater (-2-10 times) than that to which they will be compressed. The record of surface pressure (II) versus molecular area (A) at constant temperature as the barrier is moved forward to compress the monolayer is known as an isotherm, which is analogous to P-V isotherms for bulk substances. H-A isotherm data provide information on the molecular packing, the monolayer stability as de-... [Pg.61]


See other pages where Forward chaining is mentioned: [Pg.479]    [Pg.54]    [Pg.30]    [Pg.307]    [Pg.232]    [Pg.371]    [Pg.479]    [Pg.54]    [Pg.30]    [Pg.307]    [Pg.232]    [Pg.371]    [Pg.2573]    [Pg.2587]    [Pg.43]    [Pg.304]    [Pg.475]    [Pg.533]    [Pg.533]    [Pg.533]    [Pg.534]    [Pg.538]    [Pg.53]    [Pg.324]    [Pg.235]    [Pg.496]    [Pg.332]    [Pg.360]    [Pg.73]    [Pg.171]    [Pg.330]    [Pg.54]    [Pg.265]    [Pg.280]    [Pg.49]    [Pg.169]    [Pg.175]    [Pg.198]    [Pg.591]    [Pg.797]    [Pg.194]    [Pg.12]    [Pg.121]    [Pg.682]    [Pg.173]   
See also in sourсe #XX -- [ Pg.479 ]

See also in sourсe #XX -- [ Pg.218 ]




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Facts forward chaining mechanism

Forward

Forward and Backward Chaining

Forward chaining Fragment

Forward chaining Frequency

Forward chaining Limited

Forward chaining inference engine

Forward chaining, definition

Forwarder

Going Forward with Markov Chain Monte Carlo

Triggering Actions — Forward-Chaining Rules

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