ts for mar \( \begin{array}{l}\text { Teresa wants to arrange flowers into } 8 \text { rows with } 6 \text { flowers in each row. To find the number of flowers } \\ \text { in Teresa's arrangement, she solves the expression } 8 \times 6 \text {. } \\ \text { Which three expressions are equal to } 8 \times 6 \text { ? } \\ \text { A }(8 \times 2) \times 3 \\ \text { B }(8 \times 5)+1\end{array} \)
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To find three expressions that are equal to \(8 \times 6\), we can explore different mathematical manipulations. First off, we can rewrite \(8 \times 6\) using the distributive property. We see that \(8 \times 6\) can be expressed as \((8 \times 3) \times 2\) because \(3 \times 2 = 6\). Another way to look at it is to break down numbers—\(8 \times 6\) is also equal to \((8 \times 4) + (8 \times 2) = 32 + 16 = 48\). Additionally, let’s take a closer look at your options: A) \((8 \times 2) \times 3 = 48\) B) \((8 \times 5) + 8 = 40 + 8 = 48\) So, both of the options you've provided lead us to the answer \(8 \times 6 = 48\). To find one more expression, how about \(2 \times (8 \times 3) = 48\) as well? Explore those combinations and you’ll unlock the magic of multiplication!