Q:
Add or subtract.
\( 3 \sqrt{75}-4 \sqrt{50}+\sqrt{12} \)
Q:
Subtract.
\[ \sqrt{125}-\sqrt{245} \]
Q:
Determine whether the relation is a function. Give the domain and range for the relation.
\( \{(3,6),(3,7),(3,8)\} \)
The domain of the relation is \( \{3\} \).
(Use a comma to separate answers as needed.)
The range of the relation is \( \{ \).
(Use a comma to separate answers as needed.)
Q:
Determine whether the relation is a function. Give the domain and range for the relation.
\[ \{(3,6),(3,7),(3,8)\} \]
The domain of the relation is \( \{\square \).
(Use a comma to separate answers as needed.)
Q:
Use the quotient rule to divide, then simplify, if possible
\( \frac{\sqrt[3]{500}}{\sqrt[3]{4}} \)
Q:
Use the quotient rule to divide, then simplify, if possible.
\( \frac{\sqrt{30}}{\sqrt{5}} \)
Q:
Determine whether the relation is a function. Give the domain and the range for the relation.
\( \{(-3,-3),(-2,-2),(-1,-1),(0,0)\} \)
Is the relation a function?
No
Yes
Q:
Simplify.
\( 2 \sqrt{8} \)
Q:
Determine whether the relation is a function. Give the domain and the range for the relation.
\( \{(1,4),(5,6),(8,8)\} \)
Is the relation a function?
No
The domain is \( \{\square \).
(Use a comma to separate answers as needed.)
Q:
\( \leftarrow \quad \begin{array}{l}\text { Simplify. } \\ \sqrt{63}\end{array} \)
Pon a prueba tus conocimientos sobre Preálgebra!
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