19. Consider the following transportation problem (Cell values written as monetary values represent unit transportation costs.) Customer Supply A B Supplier Сараcity 300 1 $3 $3 2 $2 $3 600 $4 200 $2 100 3 $2 500 Demand 300 Letting xij represent the transported quantity from supplier i to customer j, formulate the constraint for customer C. A. X34 +X38 +x3,c < 500 B. X1c +x2c +x3c < 500 C. X34 +x3B +x3,c = 300 D. X1c +x2c +x3,c = 300 %3D

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Chapter2: Second-order Linear Odes
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19. Consider the following transportation problem (Cell values written as monetary values
represent unit transportation costs.)
Supply
Customer
Supplier
A
B
$1
$2
$3
600
Сарасity
300
200
500
$3
$4
$3
$1
1
2
3
Demand
$2
$2
100
300
Letting xij represent the transported quantity from supplier i to customer j, formulate the
constraint for customer C.
A. X3A + X3,B +x3,c < 500
B. X1c +X2c + x3c < 500
C. X3,4 +X3B +x3,c = 300
D. X1c +X2c +x3,c = 300
Transcribed Image Text:19. Consider the following transportation problem (Cell values written as monetary values represent unit transportation costs.) Supply Customer Supplier A B $1 $2 $3 600 Сарасity 300 200 500 $3 $4 $3 $1 1 2 3 Demand $2 $2 100 300 Letting xij represent the transported quantity from supplier i to customer j, formulate the constraint for customer C. A. X3A + X3,B +x3,c < 500 B. X1c +X2c + x3c < 500 C. X3,4 +X3B +x3,c = 300 D. X1c +X2c +x3,c = 300
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