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James G. Taylor

  • Optimal commitment of forces in some Lanchester-type combat modelsOptimal commitment of forces in some Lanchester-type combat models
  • Survey on the optimal control of Lanchester-type attrition processesSurvey on the optimal control of Lanchester-type attrition processes
  • A mathematical theory for variable-coefficient Lanchester-type equations of 'modern warfare'A mathematical theory for variable-coefficient Lanchester-type equations of 'modern warfare'
  • A short table of Lanchester-Clifford-Schlafli functionsA short table of Lanchester-Clifford-Schlafli functions
  • A table of Lanchester-Clifford-Schlafli functionsA table of Lanchester-Clifford-Schlafli functions
  • A tutorial on the determination of single-weapon-system-type kill rates for use in Lanchester-type combat modelsA tutorial on the determination of single-weapon-system-type kill rates for use in Lanchester-type combat models
  • Application of differential games to problems of military conflictApplication of differential games to problems of military conflict
  • Application of differential games to problems of military conflictApplication of differential games to problems of military conflict
  • Application of differential games to problems of military conflictApplication of differential games to problems of military conflict
  • Application of differential games to problems of military conflictApplication of differential games to problems of military conflict
  • Application of differential games to problems of Naval warfareApplication of differential games to problems of Naval warfare
  • Comparison of a deterministic and a stochastic formulation for the optimal control of a Lanchester-type attrition processComparison of a deterministic and a stochastic formulation for the optimal control of a Lanchester-type attrition process