Deck 7: Matrices
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Deck 7: Matrices
1
Evaluate the 2 × 2 determinant. 
A) 23
B) -23
C) -26
D) 26

A) 23
B) -23
C) -26
D) 26
23
2
Evaluate the 2 × 2 determinant. 
A) 27
B) -27
C) -37
D) 37

A) 27
B) -27
C) -37
D) 37
-37
3
Evaluate the 2 × 2 determinant. 
A) 6
B) -2
C) -6
D) 2

A) 6
B) -2
C) -6
D) 2
2
4
Evaluate the 2 × 2 determinant. 
A) -15.88
B) 11.32
C) 15.88
D) -1.3

A) -15.88
B) 11.32
C) 15.88
D) -1.3
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5
Evaluate the 2 × 2 determinant. 
A) -13.92
B) -9.6
C) 14.4
D) 13.92

A) -13.92
B) -9.6
C) 14.4
D) 13.92
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6
Evaluate the 2 × 2 determinant. 
A) -51.16
B) 51.16
C) 4.9
D) -5.24

A) -51.16
B) 51.16
C) 4.9
D) -5.24
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7
Evaluate the 2 × 2 determinant. 
A) -
B)
C) -
D)

A) -

B)

C) -

D)

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8
Evaluate the 2 × 2 determinant. 
A)
B)
C) -
D) -

A)

B)

C) -

D) -

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9
Evaluate the 2 × 2 determinant. 
A) 36
B) 0
C) -36
D) 10

A) 36
B) 0
C) -36
D) 10
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10
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solutions), or dependent (infinitely many solutions). 
A) (-3, 5)
B) (5, -3)
C) inconsistent
D) dependent

A) (-3, 5)
B) (5, -3)
C) inconsistent
D) dependent
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11
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solutions), or dependent (infinitely many solutions). 
A) (2, 4)
B) (4, 2)
C) inconsistent
D) dependent

A) (2, 4)
B) (4, 2)
C) inconsistent
D) dependent
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12
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solutions), or dependent (infinitely many solutions). 
A) (8, 6)
B) (6, 8)
C) inconsistent
D) dependent

A) (8, 6)
B) (6, 8)
C) inconsistent
D) dependent
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13
Evaluate the 3 × 3 determinant. 
A) 164
B) 248
C) -268
D) -296

A) 164
B) 248
C) -268
D) -296
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14
Evaluate the 3 × 3 determinant. 
A) -492
B) 768
C) 408
D) 492

A) -492
B) 768
C) 408
D) 492
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15
Evaluate the 3 × 3 determinant. 
A) -334
B) 170
C) 158
D) 14

A) -334
B) 170
C) 158
D) 14
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16
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solution), or dependent (infinitely many solutions). 
A) (-3, 4, -5)
B) (-5, 4, -3)
C) inconsistent
D) dependent

A) (-3, 4, -5)
B) (-5, 4, -3)
C) inconsistent
D) dependent
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17
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solution), or dependent (infinitely many solutions). 
A) (2, 5, 5)
B) (3, -4, -4)
C) inconsistent
D) dependent

A) (2, 5, 5)
B) (3, -4, -4)
C) inconsistent
D) dependent
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18
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solution), or dependent (infinitely many solutions). 
A) (1, 3, -1)
B) (-1, 3, 1)
C) inconsistent
D) dependent

A) (1, 3, -1)
B) (-1, 3, 1)
C) inconsistent
D) dependent
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19
Evaluate the 2 × 2 determinant. 

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20
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions).10x + 7y = -8-10x - 7y = 8
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21
Evaluate the 3 × 3 determinant. 

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22
Apply determinants to find the area of a triangle with vertices (10, 5), (-1, 12), and 
A) 28 square units
B) 56 square units
C) 193 square units
D) 68 square units

A) 28 square units
B) 56 square units
C) 193 square units
D) 68 square units
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23
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 

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24
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 

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25
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 
A) (2, 8)
B) (-34, 6)
C) inconsistent
D) dependent

A) (2, 8)
B) (-34, 6)
C) inconsistent
D) dependent
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26
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 
A) (6, -4)
B) (1, 8)
C) dependent
D) inconsistent

A) (6, -4)
B) (1, 8)
C) dependent
D) inconsistent
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27
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 

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28
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 

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29
Use Cramer's Rule to solve the system of equations or determine if the system is inconsistent (no solution) or dependent (infinitely many solutions). 
A) (-3, 3, -1)
B) (-3, -3, -1)
C) (-1, 3, -3)
D) (-1, -3, -3)

A) (-3, 3, -1)
B) (-3, -3, -1)
C) (-1, 3, -3)
D) (-1, -3, -3)
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30
Solve the system of linear equations for x, y, and z. 

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31
Three points are collinear if the area of the triangle with vertices at those three points is zero. Are the points (10, -2), (5, -7), and (2, -13) colinear?
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32
Three points are collinear if the area of the triangle with vertices at those three points is zero. Are the points (-18, 17), (-9, 9), and (27, -23) colinear?
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33
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solutions), or dependent (infinitely many solutions). 
A) (7, 1)
B) (1, 7)
C) inconsistent
D) dependent

A) (7, 1)
B) (1, 7)
C) inconsistent
D) dependent
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34
Use Cramer's Rule to either solve the system of equations, determine if the system is inconsistent (no solution), or dependent (infinitely many solutions). 
A) (5, -1, -2)
B) (5, 2, 5)
C) inconsistent
D) dependent

A) (5, -1, -2)
B) (5, 2, 5)
C) inconsistent
D) dependent
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35
Write the system of linear equations as a matrix equation. 
A) =

B) =

C) =

D) =


A) =



B) =



C) =



D) =



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36
Write the system of linear equations as a matrix equation. 
A) =

B) =

C)=

D) =


A) =



B) =



C)=



D) =



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37
Write the system of linear equations as a matrix equation.

A)=

B)=

C) =

D)\=


A)=



B)=



C) =



D)\=



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38
Write the system of equations as a matrix equation. 

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39
Determine if B is the multiplicative inverse of A using
= I.
A =
and B = 

A =


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40
Determine if B is the multiplicative inverse of A using
= I.
A =
and B = 

A =


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41
Find
given that A =
.
A)
B)
C)
D)


A)

B)

C)

D)

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42
Find
given that A =
.
A)
B)
C)
D)


A)

B)

C)

D)

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43
Find
given that A =
.
A)
B)
C)
D)


A)

B)

C)

D)

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44
Apply the matrix algebra to solve the system of linear equations.

A) (2, -3, 5)
B) (-3, 2, 5)
C) (5, 2, -3)
D) (5, -3, 2)

A) (2, -3, 5)
B) (-3, 2, 5)
C) (5, 2, -3)
D) (5, -3, 2)
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45
Apply the matrix algebra to solve the system of linear equations.

A) (4, 6, 3)
B) (3, 4, 6)
C) (3, 6, 4)
D) (6, 3, 4)

A) (4, 6, 3)
B) (3, 4, 6)
C) (3, 6, 4)
D) (6, 3, 4)
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46
Apply the matrix algebra to solve the system of linear equations.

A) (-4, -3, 1)
B) (1, -3, -4)
C) infinitely many solutions
D) no solution

A) (-4, -3, 1)
B) (1, -3, -4)
C) infinitely many solutions
D) no solution
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47
Apply the matrix algebra to solve the system of linear equations.

A) (-2, 2, 3)
B) (2, -2, 3)
C) (3, -2, 2)
D) (3, 2, -2)

A) (-2, 2, 3)
B) (2, -2, 3)
C) (3, -2, 2)
D) (3, 2, -2)
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48
Find
given that A =
.


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49
A college apparel sales associated with the final basketball tournament and the championship game in the football are represented with the following matrix:
The revenue generated by the sales of theses T-shirts and sweat-shirts is given the following matrix:

-Find


-Find

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50
A college apparel sales associated with the final basketball tournament and the championship game in the football are represented with the following matrix:
The revenue generated by the sales of theses T-shirts and sweat-shirts is given the following matrix:

-What does B represent?


-What does B represent?
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51
Apply the matrix algebra to solve the system of linear equations. 
A) (-1, 5)
B) (1, -5)
C) (1, 5)
D) (-1, -5)

A) (-1, 5)
B) (1, -5)
C) (1, 5)
D) (-1, -5)
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52
Apply the matrix algebra to solve the system of linear equations.
2x - 4y = 14
-3x + 8y = -27
2x - 4y = 14
-3x + 8y = -27
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53
Apply the matrix algebra to solve the system of linear equations. 

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54
Find
given that A =
.


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55
Determine if B is the multiplicative inverse of A using
= I.
A =
and B = 

A =


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56
Determine if B is the multiplicative inverse of A using
= I.
A =
and B = 

A =


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57
Calculate A + B if A =
and B =
.
A)
B)
C)
D)


A)

B)

C)

D)

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58
Calculate AB if A =
and B =
.
A)
B)
C)
D)


A)

B)

C)

D)

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59
Calculate 3B - 2A if A =
and B =
.
A)
B)
C)
D)


A)

B)

C)

D)

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60
Calculate D (A + B) if 
A)

B)

C)

D)


A)

B)

C)

D)

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61
Calculate AB if A =
and B =
.


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62
Solve for the indicated variables.

A) x = 5, y = -10, z = -7
B) x = -10, y = 5, z = -7
C) x = -10, y = -5, z = -4
D) x = 10, y = 5, z = -7

A) x = 5, y = -10, z = -7
B) x = -10, y = 5, z = -7
C) x = -10, y = -5, z = -4
D) x = 10, y = 5, z = -7
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63
Calculate -4A - 5B if A =
and B =
.
A)
B)
C)
D)


A)

B)

C)

D)

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64
A company has two rubrics for scoring job applicants based on weighing education, experience, and the interview differently.
Applications receive a score from 1 to 10 in each category (education, experience, and interview). Two applicants are shown in matrix B:
What is the order of BA? What does each entry in BA tell us?

Applications receive a score from 1 to 10 in each category (education, experience, and interview). Two applicants are shown in matrix B:

What is the order of BA? What does each entry in BA tell us?
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65
Perform the indicated operations for the expression, if possible.A =
B =
C =
AB - 9C
A)
B)
C)
D) not possible



A)

B)

C)

D) not possible
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66
Perform the indicated operations for the expression, if possible.
A =
B = 

A)
B)
C)
D) not possible
A =



A)

B)

C)

D) not possible
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67
Write the order of the matrix.

A) 3 × 2
B) 2 × 2
C) 2 × 3
D) 3 × 3

A) 3 × 2
B) 2 × 2
C) 2 × 3
D) 3 × 3
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68
Write the order of the matrix.

A) 3 × 3
B) 2 × 2
C) 2 × 3
D) 3 × 2

A) 3 × 3
B) 2 × 2
C) 2 × 3
D) 3 × 2
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69
Write the order of the matrix.

A) 4 × 1
B) 4 × 4
C) 1 × 4
D) 1 × 1

A) 4 × 1
B) 4 × 4
C) 1 × 4
D) 1 × 1
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70
Solve for the indicated variables.

A) (-6, 3)
B) (3, 6)
C) (6, 3)
D) (-6, -3)

A) (-6, 3)
B) (3, 6)
C) (6, 3)
D) (-6, -3)
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71
Solve for the indicated variables.

A) (-4, 5)
B) (-1, 6)
C) (2, 8)
D) (4, 5)

A) (-4, 5)
B) (-1, 6)
C) (2, 8)
D) (4, 5)
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72
Solve for the indicated variables.

A) (-5, -4)
B) (-4, 5)
C) (5, -4)
D) (-5, 4)

A) (-5, -4)
B) (-4, 5)
C) (5, -4)
D) (-5, 4)
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73
Calculate AB if A =
and B =
.


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74
Calculate
if A =
.
A)
B)
C)
D)


A)

B)

C)

D)

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75
Write the system of linear equations as an augmented matrix.

A)
B)
C)
D)

A)

B)

C)

D)

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76
Write the system of linear equations as an augmented matrix.

A)
B)
C)
D)

A)

B)

C)

D)

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77
Write the system of linear equations as an augmented matrix.

A)
B)
C)
D)

A)

B)

C)

D)

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78
Write the system of linear equations as an augmented matrix.

A)
B)
C)
D)

A)

B)

C)

D)

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79
Write the system of linear equations represented by the augmented matrix. Utilize the variables x and y.

A) 14x - 7y = 30
28x + 2y = 16
B) 14x + 7y = 30
28x - 2y = 16
C) 28x + 7y = 30
14x - 2y = 16
D) 14x + 2y = 16
28x - 16y = 30

A) 14x - 7y = 30
28x + 2y = 16
B) 14x + 7y = 30
28x - 2y = 16
C) 28x + 7y = 30
14x - 2y = 16
D) 14x + 2y = 16
28x - 16y = 30
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80
Write the system of linear equations as represented by the augmented matrix. Utilize the variables x and y. 
A) -6x - 2y = -12
5x + 7y = -20
B) 5x - 2y = -20
-6x + 7y = -12
C) 5x + 7y = -12
-6x + 2y = -20
D) 5x - 2y = -12
-6x + 7y = -20

A) -6x - 2y = -12
5x + 7y = -20
B) 5x - 2y = -20
-6x + 7y = -12
C) 5x + 7y = -12
-6x + 2y = -20
D) 5x - 2y = -12
-6x + 7y = -20
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