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Multiple choice questions on LP

  1. The constraint 5×1 – 2×2 < 0 passes through the point (xx, 50).
    xx = ?
  2. In a linear programming problem, the binding constraints for the optimal solution are
    5X + 3Y < 30
    2X + 5Y < 20
    Fill in the blanks in the following sentence:
    As long as the slope of the objective function stays between and , the current optimal solution point will remain optimal.

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A. 1/3 and 3/5
B. -5/3 and -4/5
C. -8/3 and -2/5
D. -5/3 and -2/5

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  1. Which of the following could be a linear programming objective function?
    A. Z = 1A + 2B / C + 3D
    B. Z = 1A + 2BC + 3D
    C. Z = 1A + 2B + 3C + 4D
    D. Z = 1A + 2B2 + 3D
    E. all of the above
  2. Output from a computer package is precise and answers should _ be rounded.
    A. never
    B. always
    C. sometimes
    D. often
  3. Mark the answers below which are true:
    A. Bayes probability uses updates to improve estimates of prior probabilities.
    B. Shafer-Dempster probabilities use belief functions which are very useful for situations when the sum of existing knowledge (probabilities) need not add to one.
    C. Fuzzy logic is too inaccurate to be used for anything useful.
    D. Both A and B
    E. All of the above
    © BrainMass Inc. brainmass.com March 21, 2019, 1:46 pm ad1c9bdddf
    https://brainmass.com/business/business-management/multiple-choice-questions-on-lp-105051
    Attachments Doc 1.doc

Solution Preview

  1. The constraint 5×1 – 2×2 < 0 passes through the point (xx, 50).
    xx = ?

5×1-2×2=0
5×1 = 2 x2 = 2 * 50 =100
x1= 100/5 =20
xx=20

Answer: xx=20

  1. In a linear programming problem, the binding constraints for the optimal solution are
    5X + 3Y < 30
    2X + 5Y < 20
    Fill in the blanks in the following sentence:
    As long as the slope of the objective function stays between and , the current optimal solution point will remain optimal.

A. 1/3 and 3/5
B. -5/3 and -4/5
C. -8/3 and -2/5
D. -5/3 and -2/5

Answer: D. -5/3 and -2/5

The slope of 5X + 3Y < 30 is -5/3
The slope of 2X + 5Y < 20 is …

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