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Maximize f = 6x + 4 y subject to x + 2y :5 16 3x + 2y :5 24 x O,y 0

Linear Algebra with Applications | 8th Edition | ISBN: 9781449679545 | Authors: Gareth Williams ISBN: 9781449679545 435

Solution for problem 2 Chapter 8

Linear Algebra with Applications | 8th Edition

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Linear Algebra with Applications | 8th Edition | ISBN: 9781449679545 | Authors: Gareth Williams

Linear Algebra with Applications | 8th Edition

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Problem 2

Maximize f = 6x + 4 y subject to x + 2y :5 16 3x + 2y :5 24 x O,y 0

Step-by-Step Solution:
Step 1 of 3

l Grcx)\no $'ti . *rf"') -l[.o*\nC") l[,,' \n l'Cx-l* : +A) = IC) '\n\x\ {'Cg --'/v nK*l)'f{n *tt }'co)=r 3 Sci l'[-) =\t** 'i.^ FC; --\o\r,\rJ {' (r)r*n^ ffi; t{ *3y*56)l= -f-g'- i r-\ f{d,=-f,c1 re1 q'(1c)) lC3Ci) = 1'Cx) fot",l=. \-y,z FC"--) L5)\.___Fq- fo-=_ j"l"* \.[."D= \ntA b**d t n $) = [n L,) r^C$ {tn =fil $[x] 1G

Step 2 of 3

Chapter 8, Problem 2 is Solved
Step 3 of 3

Textbook: Linear Algebra with Applications
Edition: 8
Author: Gareth Williams
ISBN: 9781449679545

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Maximize f = 6x + 4 y subject to x + 2y :5 16 3x + 2y :5 24 x O,y 0