Solution: Rewrite in slope-intercept form: $ 3y = 2x + 12 $ â $ y = rac23x + 4 $. The $ y $-intercept occurs at $ x = 0 $, so $ y = 4 $. - RTA
How to Rewrite the Equation in Slope-Intercept Form: Solution Explained
How to Rewrite the Equation in Slope-Intercept Form: Solution Explained
When working with linear equations, one of the most useful forms is the slope-intercept form, written as:
$$ y = mx + b $$
where $ m $ represents the slope and $ b $ the $ y $-intercept. While many students learn to convert equations like $ 3y = 2x + 12 $ into slope-intercept form quickly, understanding the full process reinforces algebraic skills and improves problem-solving confidence.
The Original Equation
Understanding the Context
Start with the given linear equation:
$$ 3y = 2x + 12 $$
To rewrite it in slope-intercept form, divide every term by 3 to isolate $ y $:
$$
y = rac{2x + 12}{3}
$$
$$
y = rac{2}{3}x + 4
$$
Identifying the $ y $-Intercept
Image Gallery
Key Insights
The slope-intercept form reveals key features immediately:
- The slope $ m = rac{2}{3} $, which indicates that for every 3 units increase in $ x $, $ y $ increases by 2.
- The $ y $-intercept $ b = 4 $, meaning the line crosses the $ y $-axis at $ (0, 4) $.
This point is critical because it gives a clear starting point for graphing or analyzing the equation’s behavior.
Why This Matters: Practical Applications
Rewriting equations in slope-intercept form is foundational in algebra, making it easier to:
- Graph linear relationships clearly
- Compare slopes and intercepts between different equations
- Solve real-world problems involving linear trends, such as predicting costs, measuring growth, or analyzing data linear relationships
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Summary: Key Takeaway
To transform any line equation into slope-intercept form:
- Isolate $ y $ by dividing all terms by the coefficient of $ y $.
- Simplify the right-hand side.
- Identify $ m $ and $ b $ clearly for interpretation.
In the example $ 3y = 2x + 12 $, solving step-by-step delivers the clean $ y = rac{2}{3}x + 4 $ form—providing both slope and $ y $-intercept at a glance. Mastery of this technique strengthens your algebraic toolkit and supports advanced math topics ahead.
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