By Thomas E. Quantrille
[Main textual content] -- Appendix B: faster (PDC) Prolog software for EXSEP
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Extra resources for Artificial intelligence in chemical engineering
It is declarative because only the logical relations concern us. How Prolog solves it is not important. 2. Procedural Nature Prolog, however, also has a procedural side. "Procedural" focuses on how Prolog solves the problem. Consider again the clause: W:- Χ,Υ,ζ. The procedural translation of this clause is: "to solve W, first solve X, then solve Y, and finally solve Z". As another example, consider the built-in predicate =. When we write the statement χ - γ. we are instructing Prolog to execute a specific unification or matching procedure dictated by the rules of the = predicate.
Step 2: Looking within each structure, Prolog matches the components. The following instantia tions are performed: XI - X Y - b Ζ - c Note that X is instantiated to XI, and both X and XI are still free variables. , f e e d s _ _ ± n t o ( X I , b , c ) = f e e d s _ i n t o ( a , b , c ) ]. Again, both functors match and have the same arity. Prolog looks inside each structure, and a match does exist. Constants b and c match constants b and c. In addition, variable XL matches constant a. Prolog instantiates XL to a.
Free variables remain free but share the same object. As the program progresses and more matching occurs, variables normally become instantiated to increasingly more specific terms. C. 2B, the statement J = 1 is treated much differently in Prolog compared to a procedural language such as FORTRAN. , it is reserved by Prolog and is recognized as having special meaning. A different, and perhaps more consistent way to write the equality J = 1 is: - (J, i). Here, = is the functor, and J and 1 are the arguments.
Artificial intelligence in chemical engineering by Thomas E. Quantrille
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