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1. |
Rewrite 16 × 0.4 + 16 × 10 using the distributive property. |
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A. |
16 + (0.4 + 10) |
B. |
16(0.4 × 10) |
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C. |
16 + (0.4 × 10) |
D. |
16(0.4 + 10) |
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Hint |
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2. |
How could you find 5 × 17 mentally using the distributive property? |
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A. |
5 + 10 × 5 + 7 |
B. |
5 × 10 × 5 × 7 |
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C. |
5 × 10 + 5 × 7 |
D. |
5 × 10 - 5 × 7 |
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Hint |
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3. |
If Julie has x strawberries in one sack and four fewer strawberries in another sack, write an expression for how many strawberries are in the second sack. |
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A. |
4 + x |
B. |
4 - x |
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C. |
x + 4 |
D. |
x - 4 |
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Hint |
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4. |
What is another way to write (6 + 7)x? |
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A. |
6(x) + 7 |
B. |
6(x) + 7(x) |
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C. |
6(x) × 7(x) |
D. |
6 + 7(x) |
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Hint |
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5. |
Use the formula d = rt to find the rate r of travel if t = 3.5 hours and d = 203 miles. |
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A. |
58 miles per hour |
B. |
63 miles per hour |
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C. |
68 miles per hour |
D. |
53 miles per hour |
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Hint |
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6. |
The formula F = C + 32 is used to convert the temperature in degrees Celsius to degrees Fahrenheit. If the temperature outside is 18° Celsius, what is the temperature in degrees Fahrenheit? |
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A. |
42.0° F |
B. |
13.6° F |
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C. |
64.4° F |
D. |
38.8° F |
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Hint |
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7. |
Use the distributive property to rewrite 3(5 + y) without parentheses. |
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A. |
15 + y |
B. |
8 + y |
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C. |
8 + 3y |
D. |
15 + 3y |
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Hint |
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8. |
Find the volume of the rectangular prism. |
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A. |
900 in3 |
B. |
33 in3 |
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C. |
50 in3 |
D. |
90 in3 |
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Hint |
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9. |
Find the volume of the triangular prism. |
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A. |
640 cubic inches |
B. |
80 cubic inches |
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C. |
320 cubic inches |
D. |
160 cubic inches |
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Hint |
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10. |
Determine the volume of the figure below to the nearest tenth. |
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A. |
10 m3 |
B. |
33.3 m3 |
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C. |
39.8 m3 |
D. |
30.6 m3 |
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Hint |
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11. |
Find the volume of a cylindrical fuel storage tank that has a radius of 9 meters and a height of 14 meters. |
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A. |
14,250.3 m3 |
B. |
3562.6 m3 |
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C. |
890.6 m3 |
D. |
5541.8 m3 |
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Hint |
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12. |
Factor the polynomial 3x + 3. |
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A. |
3(x + 3) |
B. |
3(x - 1) |
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C. |
3(x + 1) |
D. |
3(x - 3) |
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Hint |
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13. |
Using n to represent the number of blocks in each bag, write an algebraic expression for the total number of blocks. |
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A. |
4n + 3 |
B. |
4n + 4 |
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C. |
3n + 3 |
D. |
3n + 4 |
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Hint |
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14. |
Make a flowchart for the expression. . |
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A. |
 |
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B. |
 |
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C. |
 |
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D. |
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Hint |
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15. |
Find two ways to write the rule for the table. |
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A. |
3(x + 4), 3x + 12 |
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B. |
3(x + 12), 3x + 36 |
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C. |
15x |
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D. |
3(x + 4), 3x + 15 |
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Hint |
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16. |
How many squares do you add from Stage s to Stage s + 1 in the pattern below? |
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A. |
s + 2 squares |
B. |
s + 1 squares |
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C. |
s squares |
D. |
0 squares |
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Hint |
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17. |
Draw a top-count view for the structure represented below. |
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A. |
 |
B. |
 |
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C. |
 |
D. |
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Hint |
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18. |
For each 1 cubic unit of volume, how many square units of surface area are there? |
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A. |
3.4 |
B. |
3.8 |
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C. |
4.5 |
D. |
4.2 |
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Hint |
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19. |
Use the net's measurements to find the surface area of the triangular pyramid. |
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A. |
346 m2 |
B. |
98.3 m2 |
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C. |
173 m2 |
D. |
86.5 m2 |
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Hint |
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20. |
Find the surface area of a soup can that has a height of 12 cm and a diameter of 8 cm. |
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A. |
1,005.3 cm2 |
B. |
703.7 cm2 |
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C. |
1,206.4 cm2 |
D. |
402.1 cm2 |
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Hint |
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