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Martin Sleziak
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math.LO Logic

  • Lambda calculus, the theoretical basis for functional programmingfunctional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verificationFormal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
  • logical reasoning is widely and sometime non-trivial used in law application in courts, and in should be in parliaments during setting a law systems

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
  • logical reasoning is widely and sometime non-trivial used in law application in courts, and in should be in parliaments during setting a law systems

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
  • logical reasoning is widely and sometime non-trivial used in law application in courts, and in should be in parliaments during setting a law systems
added 142 characters in body; added 24 characters in body
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kakaz
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  • 24
  • 35

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
  • logical reasoning is widely and sometime non-trivial used in law application in courts, and in should be in parliaments during setting a law systems

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
  • logical reasoning is widely and sometime non-trivial used in law application in courts, and in should be in parliaments during setting a law systems
added 77 characters in body; added 71 characters in body
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Kim Morrison
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math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)

math.LO Logic

  • Lambda calculus, the theoretical basis for functional programming (Lisp in particular), was developed by Alonzo Church in the 1930's as part of his research on recursion and the foundations of mathematics.
  • Formal verification is used to verify software and hardware in which failure rates need to be as close to zero as possible (e.g. avionics)
  • Finite Model Theory is used to design and improve database query systems.
formal verification
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Terry Tao
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