The table below shows the six basic solutions to the following e-system. 2x₁ + 3x₂ +5₁ = 18 4x₁+3x2 +₂=24 Use the basic feasible solutions to maximize P=8x₁ + 13x₂. X₁ 0 (A) (B) 0 (C) 0 (D) 9 6 TO (E) (F) 3 X₂ 0 6 8 cools 0 0 4 5₁ 18 0 -6 0 6 0 52 24 6 0 -12 0 0 CELLE = is at x₁ = ₁x₂ = 0 The maximum of P= (Type integers or decimals.)
The table below shows the six basic solutions to the following e-system. 2x₁ + 3x₂ +5₁ = 18 4x₁+3x2 +₂=24 Use the basic feasible solutions to maximize P=8x₁ + 13x₂. X₁ 0 (A) (B) 0 (C) 0 (D) 9 6 TO (E) (F) 3 X₂ 0 6 8 cools 0 0 4 5₁ 18 0 -6 0 6 0 52 24 6 0 -12 0 0 CELLE = is at x₁ = ₁x₂ = 0 The maximum of P= (Type integers or decimals.)
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Transcribed Image Text:The table below shows the six basic solutions to the following e-system.
2x₁ + 3x₂ +5₁
= 18
4x₁+3x2
+$₂=24
Use the basic feasible solutions to maximize P=8x₁ + 13x₂.
X₁
(A) 0
(B) 0
(C) 0
(D) 9
(E) 6
(F) 3
THOOCE
E..
I
X₂
0
6
8
cools
0
0
4
$₁
18
0
-6
0
6
0
52
24
6
0
-12
0
0
CELLE
= is at x₁ = ₁x₂ = 0
The maximum of P=
(Type integers or decimals.)
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