Deck 3: Graphs of Linear Equations
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Deck 3: Graphs of Linear Equations
1
Plot the ordered pairs on the rectangular coordinate system provided.
A(4, -3), B(-6, 4)
A(4, -3), B(-6, 4)


2
List the quadrant(s)in which the given point is located.
(17, -10)
A)I
B)II
C)III
D)IV
(17, -10)
A)I
B)II
C)III
D)IV
D
3
List the quadrant(s)in which the given point is located.
(-13, -10)
A)IV
B)III
C)II
D)I
(-13, -10)
A)IV
B)III
C)II
D)I
B
4
List the quadrant(s)in which the given point is located.
The first coordinate is positive.
A)III, IV
B)I, II
C)I, IV
D)II, III
The first coordinate is positive.
A)III, IV
B)I, II
C)I, IV
D)II, III
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5
Plot the ordered pairs on the rectangular coordinate system provided.
A(2, 4), B(-3, 4)
A(2, 4), B(-3, 4)

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6
Identify the degree of each term and the degree of the polynomial.
(-4.5, -3.7)
A)III
B)I
C)II
D)IV
(-4.5, -3.7)
A)III
B)I
C)II
D)IV
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7
Identify the degree of each term and the degree of the polynomial.

A)A(6, 28); B(2, -4)
B)A(6, 6); B(2, -4)
C)A(6, 2); B(6, 2)
D)A(6, 6); B(-4, 2)

A)A(6, 28); B(2, -4)
B)A(6, 6); B(2, -4)
C)A(6, 2); B(6, 2)
D)A(6, 6); B(-4, 2)
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8
List the quadrant(s)in which the given point is located.
(13, 7)
A)IV
B)II
C)I
D)III
(13, 7)
A)IV
B)II
C)I
D)III
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9
Plot the ordered pairs on the rectangular coordinate system provided.
A(4, 6), B(-5, -5)
A(4, 6), B(-5, -5)

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10
List the quadrant(s)in which the given point is located.
(-6, 3)
A)III
B)II
C)I
D)IV
(-6, 3)
A)III
B)II
C)I
D)IV
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11
Plot the ordered pairs on the rectangular coordinate system provided.


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12
List the quadrant(s)in which the given point is located.
(-18, 0)
A)IV
B)On an axis
C)III
D)II
(-18, 0)
A)IV
B)On an axis
C)III
D)II
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13
Plot the ordered pairs on the rectangular coordinate system provided.
A(-2, -6), B(-1, 3)
A(-2, -6), B(-1, 3)

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14
List the quadrant(s)in which the given point is located.
The second coordinate is negative.
A)I, II
B)II, III
C)I, IV
D)III, IV
The second coordinate is negative.
A)I, II
B)II, III
C)I, IV
D)III, IV
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15
Plot the ordered pairs on the rectangular coordinate system provided.
A(2, 3), B(4, -4)
A(2, 3), B(4, -4)

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16
Plot the ordered pairs on the rectangular coordinate system provided.
A(0, 2), B (0, -5)
A(0, 2), B (0, -5)

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17
Identify the degree of each term and the degree of the polynomial.

A)C(-3, 7); D(-5, 5)
B)C(-3, 7); D(5, -5)
C)C(7, 10); D(-5, 5)
D)C(-3, -5); D(7, -5)

A)C(-3, 7); D(-5, 5)
B)C(-3, 7); D(5, -5)
C)C(7, 10); D(-5, 5)
D)C(-3, -5); D(7, -5)
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18
Plot the ordered pairs on the rectangular coordinate system provided.
A(-1, 0), B (5, 0)
A(-1, 0), B (5, 0)

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19
List the quadrant(s)in which the given point is located.
The coordinates have the same sign.
A)II, IV
B)I, III
C)III, IV
D)I, II
The coordinates have the same sign.
A)II, IV
B)I, III
C)III, IV
D)I, II
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20
List the quadrant(s)in which the given point is located.


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21
Find the coordinates of the labeled points.

A)A(-4, 2); B(0, 4)
B)A(4, 2); B(0, -4)
C)A(4, 2); B(0, 4)
D)A(4, -2); B(1, -4)

A)A(-4, 2); B(0, 4)
B)A(4, 2); B(0, -4)
C)A(4, 2); B(0, 4)
D)A(4, -2); B(1, -4)
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22
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
y = x - 5; (5, 0), (3, -2)
another solution. Answers may vary.
y = x - 5; (5, 0), (3, -2)

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23
Identify the degree of each term and the degree of the polynomial.

A)E(-6, 3); G(-7, -2)
B)E(-6, 3); G(-2, -7)
C)E(3, 4); G(-2, -7)
D)E(-6, -2); G(3, -2)

A)E(-6, 3); G(-7, -2)
B)E(-6, 3); G(-2, -7)
C)E(3, 4); G(-2, -7)
D)E(-6, -2); G(3, -2)
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24
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.

another solution. Answers may vary.

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25
Identify the degree of each term and the degree of the polynomial.

A)G(2, -7); H(-6, -7)
B)G(-6, 20); H(-7, -5)
C)G(2, -6); H(-7, -5)
D)G(2, -6); H(-5, -7)

A)G(2, -7); H(-6, -7)
B)G(-6, 20); H(-7, -5)
C)G(2, -6); H(-7, -5)
D)G(2, -6); H(-5, -7)
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26
Identify the degree of each term and the degree of the polynomial.

A)A(-4, 0); B(-2, -5)
B)A(4, 0); B(2, -5)
C)A(-4, 4); B(2, -5)
D)A(-4, 0); B(2, -5)

A)A(-4, 0); B(-2, -5)
B)A(4, 0); B(2, -5)
C)A(-4, 4); B(2, -5)
D)A(-4, 0); B(2, -5)
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27
Find the coordinates of the labeled points.
3x + 5y = 25; (5, 2)
A)No
B)Yes
3x + 5y = 25; (5, 2)
A)No
B)Yes
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28
Find the coordinates of the labeled points.
x - y = 4; (2, 5)
A)Yes
B)No
x - y = 4; (2, 5)
A)Yes
B)No
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29
Graph the linear equation.
y = 3x + 2

y = 3x + 2


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30
Find the coordinates of the labeled points.
3x - 4y = 18; (2, 3)
A)No
B)Yes
3x - 4y = 18; (2, 3)
A)No
B)Yes
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31
Find the coordinates of the labeled points.
5x + y = 28; (5, 3)
A)Yes
B)No
5x + y = 28; (5, 3)
A)Yes
B)No
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32
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
6x - 2y = 10; (1, -2), (3, 4)
another solution. Answers may vary.
6x - 2y = 10; (1, -2), (3, 4)

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33
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
2x + y = 7; (3, 1), (5, -3)
another solution. Answers may vary.
2x + y = 7; (3, 1), (5, -3)

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34
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
3x - 3y = 12; (-1, -5), (5, 1)
another solution. Answers may vary.
3x - 3y = 12; (-1, -5), (5, 1)

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35
Graph the linear equation.


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36
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.

another solution. Answers may vary.

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37
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
y = x + 5; (2, 7), (-4, 1)
another solution. Answers may vary.
y = x + 5; (2, 7), (-4, 1)
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38
Find the coordinates of the labeled points.
x + y = 14; (8, 6)
A)No
B)Yes
x + y = 14; (8, 6)
A)No
B)Yes
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39
Find the coordinates of the labeled points.
x + y = 6; (3, 4)
A)Yes
B)No
x + y = 6; (3, 4)
A)Yes
B)No
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40
Show that the two ordered pairs are solutions to the given equation. Then use the graph of the two points to determine
another solution. Answers may vary.
x + 2y = 8; (2, 3), (-4, 6)
another solution. Answers may vary.
x + 2y = 8; (2, 3), (-4, 6)

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41
Determine whether the given ordered pair is a solution of the equation.


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42
Graph the linear equation.


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43
Graph the linear equation.


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44
Determine whether the given ordered pair is a solution of the equation.

A)1, 0
B)(-1, 0)
D)(0, -1)

A)1, 0
B)(-1, 0)

D)(0, -1)
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45
Graph the linear equation.


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46
Determine whether the given ordered pair is a solution of the equation.
x + 2y = 1
A)(2, 2)
B)(0, 2)
D)(2, 0)
x + 2y = 1
A)(2, 2)
B)(0, 2)

D)(2, 0)
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47
Graph the linear equation.
6x - y = -5
6x - y = -5

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48
Solve the problem.
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 700, where t is the number of years since the shopkeeper first bought the program. Graph the equation and then use the graph to estimate the value of the software after 3 years.
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 700, where t is the number of years since the shopkeeper first bought the program. Graph the equation and then use the graph to estimate the value of the software after 3 years.

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49
Determine whether the given ordered pair is a solution of the equation.
y = 10x
A)1, 10
B)10, 0
C)(0, 0)
D)0, 10
y = 10x
A)1, 10
B)10, 0
C)(0, 0)
D)0, 10
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50
Determine whether the given ordered pair is a solution of the equation.
6x - 5y = -5
A)(0, -1)
B)(0, -5)
C)(0, 1)
D)(6, 5)
6x - 5y = -5
A)(0, -1)
B)(0, -5)
C)(0, 1)
D)(6, 5)
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51
Determine whether the given ordered pair is a solution of the equation.
y = x - 9
A)(-9, 0)
B)(0, -9)
C)(0, 1)
D)(0, 9)
y = x - 9
A)(-9, 0)
B)(0, -9)
C)(0, 1)
D)(0, 9)
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52
Determine whether the given ordered pair is a solution of the equation.
x + y = -9
A)(9, 0)
B)(0, 9)
C)(0, -9)
D)(0, -1)
x + y = -9
A)(9, 0)
B)(0, 9)
C)(0, -9)
D)(0, -1)
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53
Graph the linear equation.


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54
Graph the linear equation.


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55
Determine whether the given ordered pair is a solution of the equation.
y = x + 7
A)(7, 0)
B)(0, 1)
C)(7, 7)
D)(0, 7)
y = x + 7
A)(7, 0)
B)(0, 1)
C)(7, 7)
D)(0, 7)
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56
Determine whether the given ordered pair is a solution of the equation.


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57
Determine whether the given ordered pair is a solution of the equation.
5y + 8x = -7
A)(0, -7)
B)(-7, 0)

5y + 8x = -7
A)(0, -7)
B)(-7, 0)


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58
Determine whether the given ordered pair is a solution of the equation.
y = 9x - 5
A)(0, 5)
B)(0, -5)
C)(-5, 0)
D)(9, -5)
y = 9x - 5
A)(0, 5)
B)(0, -5)
C)(-5, 0)
D)(9, -5)
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59
Graph the linear equation.


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60
Solve the problem.
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 450, where t is the number of years since the shopkeeper first bought the program. Find the value of the software after 0 years,
6 years, and 8 years.
A)$420, $270, and $210
B)$450, $270, and $210
C)$450, $270, and $250
D)$450, $630, and $210
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 450, where t is the number of years since the shopkeeper first bought the program. Find the value of the software after 0 years,
6 years, and 8 years.
A)$420, $270, and $210
B)$450, $270, and $210
C)$450, $270, and $250
D)$450, $630, and $210
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61
Find the coordinates of the y-intercept and the coordinates of the x-intercept.


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62
Find the coordinates of the y-intercept and the x-intercept, in that order.
y = 1

y = 1


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63
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
-3x + 2y = -6
A)(0, -1)(0, -9)
B)(2, -9)(-1, -6)
C)(2, 0)(0, -3)
D)(-1, 0)(-9, 0)
-3x + 2y = -6
A)(0, -1)(0, -9)
B)(2, -9)(-1, -6)
C)(2, 0)(0, -3)
D)(-1, 0)(-9, 0)
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64
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
-2x + y = 10
A)(0, -8)(0, -6)
B)(-8, 0)(-6, 0)
C)(10, -6)(-8, 10)
D)(-5, 0)(0, 10)
-2x + y = 10
A)(0, -8)(0, -6)
B)(-8, 0)(-6, 0)
C)(10, -6)(-8, 10)
D)(-5, 0)(0, 10)
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65
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
2x + y = -6
A)(0, -6)(0, 6)
B)(-6, 0)(6, 0)
C)(-6, 6)(-6, -6)
D)(-3, 0)(0, -6)
2x + y = -6
A)(0, -6)(0, 6)
B)(-6, 0)(6, 0)
C)(-6, 6)(-6, -6)
D)(-3, 0)(0, -6)
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66
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
3x + y = 3
A)(3, 0)(-6, 0)
B)(3, -6)(3, 3)
C)(1, 0)(0, 3)
D)(0, 3)(0, -6)
3x + y = 3
A)(3, 0)(-6, 0)
B)(3, -6)(3, 3)
C)(1, 0)(0, 3)
D)(0, 3)(0, -6)
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67
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
x + y = -8
A)(-8, 0)(0, -8)
B)(-3, 0)(-5, 0)
C)(-8, -5)(-3, -8)
D)(0, -3)(0, -5)
x + y = -8
A)(-8, 0)(0, -8)
B)(-3, 0)(-5, 0)
C)(-8, -5)(-3, -8)
D)(0, -3)(0, -5)
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68
Find the x- and y-intercepts for the equation. Then graph the equation.
x + 2y = 6

x + 2y = 6


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69
Find the coordinates of the y-intercept for the given equation.

A)(0, 5), (-2, 0)
B)(0, -2), (5, 0)
C)(0, 0), (-2, 5)
D)(5, -2), (0, 0)

A)(0, 5), (-2, 0)
B)(0, -2), (5, 0)
C)(0, 0), (-2, 5)
D)(5, -2), (0, 0)
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70
Find the coordinates of the y-intercept and the coordinates of the x-intercept.

A)(-6, 3), (0, 0)
B)(0, 0), (3, -6)
C)(0, 3), (-6, 0)
D)(0, -6), (3, 0)

A)(-6, 3), (0, 0)
B)(0, 0), (3, -6)
C)(0, 3), (-6, 0)
D)(0, -6), (3, 0)
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71
Find the coordinates of the y-intercept for the given equation.
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 250, where t is the number of years since the shopkeeper first bought the program. After how many years is the value of the
Software $190?
A)1 yr
B)2 yr
C)3 yr
D)4 yr
The value V, in dollars, of a shopkeeper's inventory software program is given by V = -30t + 250, where t is the number of years since the shopkeeper first bought the program. After how many years is the value of the
Software $190?
A)1 yr
B)2 yr
C)3 yr
D)4 yr
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72
Find the x- and y-intercepts for the equation. Then graph the equation.
5x - 4 = y
5x - 4 = y

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73
Find the coordinates of the y-intercept and the x-intercept, in that order.
x = 1

x = 1


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74
Find the coordinates of the y-intercept for the given equation.

A)(0, 0), (-1, -5)
B)(-5, -1), (0, 0)
C)(0, -5), (-1, 0)
D)(0, -1), (-5, 0)

A)(0, 0), (-1, -5)
B)(-5, -1), (0, 0)
C)(0, -5), (-1, 0)
D)(0, -1), (-5, 0)
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75
Find the coordinates of the y-intercept and the x-intercept, in that order.
5x - 10y = 0
5x - 10y = 0

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76
Find the coordinates of the y-intercept and the coordinates of the x-intercept.
-2x - 5y = 10
A)(-9, 0)(-8, 0)
B)(-5, -8)(-9, 10)
C)(0, -9)(0, -8)
D)(0, -2)(-5, 0)
-2x - 5y = 10
A)(-9, 0)(-8, 0)
B)(-5, -8)(-9, 10)
C)(0, -9)(0, -8)
D)(0, -2)(-5, 0)
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77
Find the x- and y-intercepts for the equation. Then graph the equation.
15y - 5x = -10
15y - 5x = -10

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78
Find the x- and y-intercepts for the equation. Then graph the equation.
-4x - 8y = 24
-4x - 8y = 24

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79
Find the coordinates of the y-intercept and the coordinates of the x-intercept.


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80
Find the x- and y-intercepts for the equation. Then graph the equation.
6x - 12y = 12
6x - 12y = 12

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