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https://math.answers.com/math-and-arithmetic/Are_all_second_degree_linear_equations_conic_sections

Are all second degree linear equations conic sections? - Answers

Yes, all second-degree linear equations represent conic sections. These equations can be expressed in the general form (Ax^2 + Bxy + Cy^2 + Dx + Ey + F = 0). Depending on the coefficients (A), (B), and (C), the resulting conic can be a circle, ellipse, parabola, or hyperbola. Thus, every second-degree equation corresponds to one of these geometric shapes.



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Are all second degree linear equations conic sections? - Answers

https://math.answers.com/math-and-arithmetic/Are_all_second_degree_linear_equations_conic_sections

Yes, all second-degree linear equations represent conic sections. These equations can be expressed in the general form (Ax^2 + Bxy + Cy^2 + Dx + Ey + F = 0). Depending on the coefficients (A), (B), and (C), the resulting conic can be a circle, ellipse, parabola, or hyperbola. Thus, every second-degree equation corresponds to one of these geometric shapes.



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https://math.answers.com/math-and-arithmetic/Are_all_second_degree_linear_equations_conic_sections

Are all second degree linear equations conic sections? - Answers

Yes, all second-degree linear equations represent conic sections. These equations can be expressed in the general form (Ax^2 + Bxy + Cy^2 + Dx + Ey + F = 0). Depending on the coefficients (A), (B), and (C), the resulting conic can be a circle, ellipse, parabola, or hyperbola. Thus, every second-degree equation corresponds to one of these geometric shapes.

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      Yes, all second-degree linear equations represent conic sections. These equations can be expressed in the general form (Ax^2 + Bxy + Cy^2 + Dx + Ey + F = 0). Depending on the coefficients (A), (B), and (C), the resulting conic can be a circle, ellipse, parabola, or hyperbola. Thus, every second-degree equation corresponds to one of these geometric shapes.
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