In Problems 47 and 48, derive the formulas of Theorem 4 for the solution of any 2 × 2 non strictly determined matrix game by rewriting and analyzing E P , Q = a p 1 q 2 + b p 1 q 2 + c p 2 q 1 + d p 2 q 2 (4) (See the solution of the two-finger Morra game on pages G9-G11.) (A) Let p 2 = 1 − p 1 and q 2 = 1 − q 1 and simplify (4) to show that E P , Q = D q 1 − d − b p 1 + c − d q 1 + d where D q 1 − d − b = 0 . (B) Show that if q 1 is chosen so that D q 1 − d − b = 0 then v = a d − b c D , regardless of the value of p 1 .
In Problems 47 and 48, derive the formulas of Theorem 4 for the solution of any 2 × 2 non strictly determined matrix game by rewriting and analyzing E P , Q = a p 1 q 2 + b p 1 q 2 + c p 2 q 1 + d p 2 q 2 (4) (See the solution of the two-finger Morra game on pages G9-G11.) (A) Let p 2 = 1 − p 1 and q 2 = 1 − q 1 and simplify (4) to show that E P , Q = D q 1 − d − b p 1 + c − d q 1 + d where D q 1 − d − b = 0 . (B) Show that if q 1 is chosen so that D q 1 − d − b = 0 then v = a d − b c D , regardless of the value of p 1 .
Solution Summary: The author explains the theorem for 2times 2 non-strictly determined matrix game.
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Chapter 10 Solutions
Finite Mathematics for Business, Economics, Life Sciences and Social Sciences Plus NEW MyLab Math with Pearson eText -- Access Card Package (13th Edition)
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