2) \( (x+1)^{2}+(y-5)^{2}=4 \)
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This equation represents a circle with its center at the point \((-1, 5)\) and a radius of \(2\). All points \((x, y)\) that satisfy this equation are located exactly \(2\) units away from the center. Picture a cozy little neighborhood around the center point where every house (point) is just a stone's throw away! In real-world applications, this concept of circles is utilized in design, navigation, and even architecture. For instance, when designing a park, planners often ensure that facilities like walking paths or benches maintain a circular layout around a central feature (like a fountain) to create an inviting space. This circular design maximizes accessibility and aesthetic appeal for park visitors!