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  1.  4
    Albert A. Mullin (1965). A Contribution Toward Computable Number Theory. Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 11 (2):117-119.
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  2.  4
    Albert A. Mullin (1964). Elementary Relations Between the Fundamental Theorem of Arithmetic, Schnirelmann's Classical Theorem, and Goldbach's Conjecture. Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 10 (13-17):199-201.
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  3.  4
    Albert A. Mullin (1964). On a Final Multiplicative Formulation of the Fundamental Theorem of Arithmetic. Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 10 (9-12):159-161.
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  4.  4
    Albert A. Mullin (1963). On A Necessary Condition for the Validity of Goldbach's Conjecture. Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 9 (10):145-148.
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  5.  4
    Albert A. Mullin (1963). On A Theorem Equivalent to Post's Fundamental Theorem of Recursive Function Theory. Zeitschrift fur mathematische Logik und Grundlagen der Mathematik 9 (12-15):203-205.
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  6.  14
    Albert A. Mullin (1966). C. S. S. Peirce and E. G. A. Husserl on the Nature of Logic. Notre Dame Journal of Formal Logic 7 (4):301-304.
  7.  5
    Albert A. Mullin (1965). Mathematico-Philosophical Remarks on New Theorems Analogous to the Fundamental Theorem of Arithmetic. Notre Dame Journal of Formal Logic 6 (3):218-222.
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  8.  4
    Albert A. Mullin (1970). Review: O. B. Lupanov, On a Method of Circuit Synthesis. [REVIEW] Journal of Symbolic Logic 35 (4):593-594.
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  9.  1
    Albert A. Mullin (2005). Weiermann Andreas. An Application of Results by Hardy, Ramanujan and Karamata to Ackermannian Functions. Discrete Mathematics and Theoretical Computer Science, Vol. 6 No. 1 (2003), Pp. 133–141. [REVIEW] Bulletin of Symbolic Logic 11 (1):89-89.
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  10.  5
    Albert A. Mullin (1961). Correlative Remarks Concerning Elementary Number Theory, Groups and Mutant Sets. Notre Dame Journal of Formal Logic 2 (4):253-254.
  11.  1
    Albert A. Mullin (1965). A Contribution Toward Computable Number Theory. Mathematical Logic Quarterly 11 (2):117-119.
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  12.  2
    Albert A. Mullin (1970). Review: R. Frejvald, Complexity of Recognition of Symmetry on Turing Machines with Input; A. M. Barzdin, Complexity of Recognition of Symmetry on Turing Machines. [REVIEW] Journal of Symbolic Logic 35 (1):159-159.
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  13.  6
    Albert A. Mullin (1962). A Note on a Weakened Goldbach-Like Conjecture. Notre Dame Journal of Formal Logic 3 (2):118-119.
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  14.  2
    Albert A. Mullin (1964). Elementary Relations Between the Fundamental Theorem of Arithmetic, Schnirelmann's Classical Theorem, and Goldbach's Conjecture. Mathematical Logic Quarterly 10 (13‐17):199-201.
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  15.  4
    Albert A. Mullin (1962). Some Theorems on the Structure of Mutant Sets and Their Applications to Group and Ring Theories. Notre Dame Journal of Formal Logic 3 (3):148-151.
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  16.  4
    Albert A. Mullin (1967). On New Theorems for Elementary Number Theory. Notre Dame Journal of Formal Logic 8 (4):353-356.
  17.  2
    Albert A. Mullin (1963). On Differences of Certain Structured Sets. Notre Dame Journal of Formal Logic 4 (2):158-160.
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  18.  3
    Albert A. Mullin (1966). On a Proper Class and Related Matters. Notre Dame Journal of Formal Logic 7 (1):101-102.
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  19.  1
    Albert A. Mullin (1964). On a Final Multiplicative Formulation of the Fundamental Theorem of Arithmetic. Mathematical Logic Quarterly 10 (9‐12):159-161.
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  20. Albert A. Mullin (1963). On A Necessary Condition for the Validity of Goldbach's Conjecture. Mathematical Logic Quarterly 9 (10):145-148.
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  21. Albert A. Mullin (1963). On A Theorem Equivalent to Post's Fundamental Theorem of Recursive Function Theory. Mathematical Logic Quarterly 9 (12‐15):203-205.
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  22. Albert A. Mullin (1962). Review: Frederick C. Hennie III, Iterative Arrays of Logical Circuits. [REVIEW] Journal of Symbolic Logic 27 (1):106-107.
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  23. Albert A. Mullin (1972). Review: N. V. Belakin, Computation of Effective Operators on Turing Machines with Restricted Erasure. [REVIEW] Journal of Symbolic Logic 37 (1):198-198.
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  24. Albert A. Mullin (1972). Review: N. V. Belakin, Simulation of Turing Machines on Nets. [REVIEW] Journal of Symbolic Logic 37 (1):199-199.
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  25. A. Weiermann & Albert A. Mullin (2005). REVIEWS-An Application of Results by Hardy, Ramanujan and Karamata to Ackermannian Functions. Bulletin of Symbolic Logic 11 (1):89.
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