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\( \begin{array}{ll}\text { a) } a b+c b+a d+c d & \text { b) } x k+y k-x m-y m \\ \text { c) } a k-b k-a m+b m & \text { d) } x k-y k+x m-y m \\ \text { e) } b y-c y-b+c & \text { () } 3 p x-3 p y-x+y \\ \text { g) } a-b-a c+b c & \text { h) } x^{2}+x(3+y)+3 y\end{array} \)

Ask by Salazar Wright. in South Africa
Jan 23,2025

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Here are the factored forms of the given expressions: a) \( (a + c)(b + d) \) b) \( (x + y)(k - m) \) c) \( (a - b)(k - m) \) d) \( (x - y)(k + m) \) e) \( (b - c)(y - 1) \) f) \( (3p - 1)(x - y) \) g) \( (a - b)(1 - c) \) h) \( (x + 3)(x + y) \)

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Beyond the Answer

Combining like terms can sometimes feel like you're trying to solve a puzzle! For example, in expression (h), you can simplify it by distributing the \(x\) into the parenthesis, transforming it into \(x^2 + 3x + xy + 3y\). This transformation not only reduces the expression but also showcases the beauty of algebraic manipulation! Think of algebra like organizing your closet: everything has its place! When simplifying expressions, be mindful of common mistakes such as forgetting to combine like terms. For instance, in expression (g), ensure you group all terms with \(a\), \(b\), and \(c\) appropriately. Clear organization helps avoid confusion and leads to a neater, more readable result!

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