Solve the linear programming problems stated in Problems 17-38. Minimize and maximize P = 12 x + 14 y subject to − 2 x + y ≥ 6 x + y ≤ 15 3 x − y ≥ 0 x , y ≥ 0
Solve the linear programming problems stated in Problems 17-38. Minimize and maximize P = 12 x + 14 y subject to − 2 x + y ≥ 6 x + y ≤ 15 3 x − y ≥ 0 x , y ≥ 0
Solution Summary: The author calculates the maximum and minimum value of the objective function P=12x+14y subject to the given constraints.
Consider a sample with data values of 27, 25, 20, 15, 30, 34, 28, and 25. Compute the range, interquartile range, variance, and standard deviation (to a maximum of 2 decimals, if decimals are necessary).
Range
Interquartile range
Variance
Standard deviation
Could you explain this using the formula I attached and polar coorindates
1: Stanley Smothers receives tips from customers as a standard component of his weekly pay. He was paid $5.10/hour by his employer and received $305 in tips during the
most recent 41-hour workweek.
Gross Pay = $
2: Arnold Weiner receives tips from customers as a standard component of his weekly pay. He was paid $4.40/hour by his employer and received $188 in tips during the
most recent 47-hour workweek.
Gross Pay = $
3: Katherine Shaw receives tips from customers as a standard component of her weekly pay. She was paid $2.20/hour by her employer and received $553 in tips during the
most recent 56-hour workweek.
Gross Pay = $
4: Tracey Houseman receives tips from customers as a standard component of her weekly pay. She was paid $3.90/hour by her employer and received $472 in tips during
the most recent 45-hour workweek.
Gross Pay = $
Chapter 5 Solutions
Finite Mathematics for Business, Economics, Life Sciences, and Social Sciences (14th Edition)
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