10 found
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  1.  8
    Selection functions for recursive functionals.Thomas J. Grilliot - 1969 - Notre Dame Journal of Formal Logic 10 (3):225-234.
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  2.  26
    On effectively discontinuous type-2 objects.Thomas J. Grilliot - 1971 - Journal of Symbolic Logic 36 (2):245-248.
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  3.  33
    Omitting types: Application to recursion theory.Thomas J. Grilliot - 1972 - Journal of Symbolic Logic 37 (1):81-89.
  4.  14
    Disturbing arithmetic.Thomas J. Grilliot - 1985 - Journal of Symbolic Logic 50 (2):375-379.
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  5.  20
    Hierarchies based on objects of finite type.Thomas J. Grilliot - 1969 - Journal of Symbolic Logic 34 (2):177-182.
    Shoenfield [8] has shown that a hierarchy for the functions recursive in a type-2 object can be set up whenever E2 (the type-2 object that introduces numerical quantification) is recursive in that type-2 object. With a restriction that we will discuss in the next paragraph, Moschovakis [4, pp. 254–259] has solved the analogous problem for type-3 objects. His method seems to generalize for any type-n object, where n ≥ 2. We will solve this same problem of finding hierarchies based on (...)
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  6.  11
    Hyperanalytic Predicates.Yiannis N. Moschovakis & Thomas J. Grilliot - 1971 - Journal of Symbolic Logic 36 (1):147-148.
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  7.  6
    Kleene S. C.. Recursive functionals and quantifiers of finite types II. Transactions of the American Mathematical Society, vol. 108 , pp. 106–142. [REVIEW]Thomas J. Grilliot - 1971 - Journal of Symbolic Logic 36 (1):146-146.
  8.  8
    Review: S. C. Kleene, Recursive Functionals and Quantifiers of Finite Types II. [REVIEW]Thomas J. Grilliot - 1971 - Journal of Symbolic Logic 36 (1):146-146.
  9.  6
    Review: Yiannis N. Moschovakis, Abstract First Order Computability. [REVIEW]Thomas J. Grilliot - 1972 - Journal of Symbolic Logic 37 (4):758-758.
  10.  12
    Yiannis N. Moschovakis. Abstract first order computability. Transactions of the American Mathematical Society, vol. 138 , pp. 427–464 and pp. 465–504. [REVIEW]Thomas J. Grilliot - 1972 - Journal of Symbolic Logic 37 (4):758.