SOLUTION: 2x+y >orequal to 8,x+y> orequalto 12, 3x+2y<orequalto 34 common region is
a.unbounded b.infeasible c.feasible and bounded d.feasible and unbounded
Algebra.Com
Question 986959: 2x+y >orequal to 8,x+y> orequalto 12, 3x+2y
a.unbounded b.infeasible c.feasible and bounded d.feasible and unbounded
Answer by Fombitz(32388) (Show Source): You can put this solution on YOUR website!
Feasible
,
,
,
.
RELATED QUESTIONS
Is the solution region to the system below bounded or unbounded?
3x-y>6
y>=0... (answered by ikleyn)
Is the solution region to the system below bounded or unbounded?
x+y>=-2
x<=12... (answered by ikleyn)
Is the solution region bounded or unbounded?
-x+3y>=6
2x-y<=4
x>=0... (answered by ikleyn)
Is the solution region to the system below bounded or unbounded?
16x+y<=32
x>=0... (answered by ikleyn)
Solve the given LP problem. If no optimal solution exists, indicate whether the feasible... (answered by greenestamps)
For the graph y=2, what is the:
A) Domain
B) Range
C) X values of all zeroes
D)... (answered by solver91311,stanbon)
Solve the LP problem. If no optimal solution exists, indicate whether the feasible region (answered by greenestamps,ikleyn)
Select the point which is in the feasible region
of the system of inequalities.
2x + (answered by Edwin McCravy)
Maximize z= 15x + 20y subject to
3x + 4y <(or equal to) 84
5x + 2y <(or equal to) 70
x (answered by Fombitz)