Question
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d)) Use algebra tiles to find \( \left(-9 x^{2}+9 x\right)-\left(-9 x^{2}+x\right) \)

Ask by Newton Summers. in the United States
Jan 23,2025

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Tutor-Verified Answer

Answer

The result is \(8x\).

Solution

To solve \( \left(-9x^{2} + 9x\right) - \left(-9x^{2} + x\right) \) using **algebra tiles**, let's break down the problem step-by-step. ### Understanding Algebra Tiles Algebra tiles are visual representations used to model algebraic expressions. Each term in the expression is represented by a specific tile: - **Positive \(x^{2}\) tile**: Typically a large square. - **Negative \(x^{2}\) tile**: A large square of a different color (e.g., red). - **Positive \(x\) tile**: A rectangle. - **Negative \(x\) tile**: A rectangle of a different color (e.g., red). - **Positive constant tile**: A small square. - **Negative constant tile**: A small square of a different color (e.g., red). ### Step-by-Step Solution 1. **Represent Each Expression with Tiles:** - **First Expression:** \( -9x^{2} + 9x \) - **-9 \(x^{2}\) Tiles:** 9 large red squares. - **+9 \(x\) Tiles:** 9 rectangles. - **Second Expression:** \( -9x^{2} + x \) - **-9 \(x^{2}\) Tiles:** 9 large red squares. - **+1 \(x\) Tile:** 1 rectangle. 2. **Set Up the Subtraction:** \[ \left(-9x^{2} + 9x\right) - \left(-9x^{2} + x\right) \] Subtracting the second expression is equivalent to adding its additive inverse: \[ \left(-9x^{2} + 9x\right) + \left(+9x^{2} - x\right) \] 3. **Combine Like Terms:** - **\(x^{2}\) Terms:** - \( -9x^{2} + 9x^{2} = 0x^{2} \) - The large red squares cancel each other out. - **\(x\) Terms:** - \( +9x - x = +8x \) - You are left with 8 positive \(x\) rectangles. 4. **Final Representation:** After cancellation, the only tiles remaining are **8 positive \(x\)** rectangles. ### Conclusion Using algebra tiles, subtracting \( \left(-9x^{2} + x\right) \) from \( \left(-9x^{2} + 9x\right) \) results in: \[ 8x \] **Answer:** \(8x\)

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The Deep Dive

To tackle the expression \( \left(-9 x^{2}+9 x\right)-\left(-9 x^{2}+x\right) \) using algebra tiles, you can visualize it. First, you have 9 tiles representing \(-9x^2\) and 9 tiles for \(9x\). When you subtract the second expression, you can think of it as adding the opposite, which means you will change the sign of the second part. You then have the \(-9x^2\) tiles canceling each other out, and you'll be left with \(9x - x = 8x\). Thus, after simplification, the final result is \(8x\). Just imagine flipping the signs with the tiles; it makes the algebra so much clearer and engaging! Using algebra tiles can really help visualize complex equations! By representing variables and constants with physical tiles, you can physically manipulate them to see how they combine, cancel, or change through operations. This hands-on approach can solidify your understanding of how algebra works and makes solving equations feel much more like playing a game than a chore! Plus, using colorful tiles can make it even more fun, especially in a classroom setting.

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