ASVAB Arithmetic Reasoning Practice Test 320959 Results

Your Results Global Average
Questions 5 5
Correct 0 3.45
Score 0% 69%

Review

1

Which of the following is not an integer?

77% Answer Correctly

1

0

-1

\({1 \over 2}\)


Solution

An integer is any whole number, including zero. An integer can be either positive or negative. Examples include -77, -1, 0, 55, 119.


2

What is -9b7 + b7?

66% Answer Correctly
-8b7
-10b-7
-8b49
-8b-14

Solution

To add or subtract terms with exponents, both the base and the exponent must be the same. In this case they are so add the coefficients and retain the base and exponent:

-9b7 + 1b7
(-9 + 1)b7
-8b7


3

Cooks are needed to prepare for a large party. Each cook can bake either 5 large cakes or 11 small cakes per hour. The kitchen is available for 2 hours and 25 large cakes and 410 small cakes need to be baked.

How many cooks are required to bake the required number of cakes during the time the kitchen is available?

41% Answer Correctly
5
12
10
22

Solution

If a single cook can bake 5 large cakes per hour and the kitchen is available for 2 hours, a single cook can bake 5 x 2 = 10 large cakes during that time. 25 large cakes are needed for the party so \( \frac{25}{10} \) = 2\(\frac{1}{2}\) cooks are needed to bake the required number of large cakes.

If a single cook can bake 11 small cakes per hour and the kitchen is available for 2 hours, a single cook can bake 11 x 2 = 22 small cakes during that time. 410 small cakes are needed for the party so \( \frac{410}{22} \) = 18\(\frac{7}{11}\) cooks are needed to bake the required number of small cakes.

Because you can't employ a fractional cook, round the number of cooks needed for each type of cake up to the next whole number resulting in 3 + 19 = 22 cooks.


4

Find the average of the following numbers: 10, 2, 8, 4.

74% Answer Correctly
6
8
4
10

Solution

To find the average of these 4 numbers add them together then divide by 4:

\( \frac{10 + 2 + 8 + 4}{4} \) = \( \frac{24}{4} \) = 6


5

4! = ?

84% Answer Correctly

4 x 3 x 2 x 1

3 x 2 x 1

4 x 3

5 x 4 x 3 x 2 x 1


Solution

A factorial has the form n! and is the product of the integer (n) and all the positive integers below it. For example, 5! = 5 x 4 x 3 x 2 x 1 = 120.