Solve the following system of equations using Cramer's Rule if it is applicable. If Cramer's Rule is not applicable, say so. X + y - z = y + 4z = 10 x + 5y - Z= 18 X- X= 6 Write the fractions using Cramer's Rule in the form of determinants. Do not evalate the determinants. 18 y = (Type an integer or simplified fraction for each matrix element.) Select the correct choice below and fill in any answer boxes within your choice. Z= ... OA. Cramer's Rule is applicable. The solution is x = 1. y = 3, and z= -2 (Simplify your answers. Type integers or simplified fractions.) OB. Cramer's Rule is not applicable.

College Algebra (MindTap Course List)
12th Edition
ISBN:9781305652231
Author:R. David Gustafson, Jeff Hughes
Publisher:R. David Gustafson, Jeff Hughes
Chapter6: Linear Systems
Section6.CR: Chapter Review
Problem 57E: If |abcdefghi|=7,evaluate each determinant. |abcd+ge+hf+ighi|
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Solve the following system of equations using Cramer's Rule if it is applicable. If Cramer's Rule is not applicable, say so.
y - z =
6
y + 4z = -10
5y
z = 18
X +
X -
x +
Write the fractions using Cramer's Rule in the form of determinants. Do not evalate the determinants.
4
y =
(Type an integer or simplified fraction for each matrix element.)
Select the correct choice below and fill in any answer boxes within your choice.
A. Cramer's Rule is applicable. The solution is x = 1, y = 3, and z = -2
(Simplify your answers. Type integers or simplified fractions.)
OB. Cramer's Rule is not applicable.
Transcribed Image Text:Solve the following system of equations using Cramer's Rule if it is applicable. If Cramer's Rule is not applicable, say so. y - z = 6 y + 4z = -10 5y z = 18 X + X - x + Write the fractions using Cramer's Rule in the form of determinants. Do not evalate the determinants. 4 y = (Type an integer or simplified fraction for each matrix element.) Select the correct choice below and fill in any answer boxes within your choice. A. Cramer's Rule is applicable. The solution is x = 1, y = 3, and z = -2 (Simplify your answers. Type integers or simplified fractions.) OB. Cramer's Rule is not applicable.
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