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exam [2011/07/19 14:00] 131.246.18.253 [Calculi] |
exam [2011/08/02 15:29] 188.107.127.174 [Core HOL] |
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:?: How are the elements //True// and //False// introduced in HOL? | :?: How are the elements //True// and //False// introduced in HOL? | ||
- | * Since there should always be an infinite set in **U** whose elements and power sets are also fully contained in **U**, there's a guarantee that there will be a set with two elements and that set is going to represent the values //True// and //False// ((Did I miss something?)) | + | * Since there should always be a distinguished infinite set in **U** whose elements and subsets are also fully contained in **U**, there's a guarantee that there will be a set with two elements (say the subset {0,1} of the infinite set) and that one is going to be mapped further on to the values //True// and //False// ((Did I miss something?)) |
:?: Why must all functions be total in Isabelle/HOL? | :?: Why must all functions be total in Isabelle/HOL? | ||
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* A deductive system is sound if all provable formulas are valid. It is complete if all valid formulas are provable. | * A deductive system is sound if all provable formulas are valid. It is complete if all valid formulas are provable. | ||
* Validity is a semantic property ($A \models B$), while provability a syntactic one ($A \vdash B$). So, in other words we have: | * Validity is a semantic property ($A \models B$), while provability a syntactic one ($A \vdash B$). So, in other words we have: | ||
- | * Soundness: $A \vdash B \rightarrow A \models B$ | + | * Soundness: $A \vdash B \longrightarrow A \models B$ |
- | * Completeness: $A \models B \rightarrow A \vdash B$ | + | * Completeness: $A \models B \longrightarrow A \vdash B$ |
:?: What are the advantages/disadvantages of the Hilbert calculus compared to the Gentzen calculus. | :?: What are the advantages/disadvantages of the Hilbert calculus compared to the Gentzen calculus. |