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

How do you work out the diametre of a shape? - Answers

To calculate the diameter of a shape, you first need to identify the shape type. For a circle, the diameter is twice the radius, which can be found using the formula (D = 2r). For other shapes, like an ellipse, the diameter can vary depending on the axes, but is typically defined as the longest distance across the shape. In polygons, the diameter can be the longest distance between any two vertices.



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How do you work out the diametre of a shape? - Answers

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

To calculate the diameter of a shape, you first need to identify the shape type. For a circle, the diameter is twice the radius, which can be found using the formula (D = 2r). For other shapes, like an ellipse, the diameter can vary depending on the axes, but is typically defined as the longest distance across the shape. In polygons, the diameter can be the longest distance between any two vertices.



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

How do you work out the diametre of a shape? - Answers

To calculate the diameter of a shape, you first need to identify the shape type. For a circle, the diameter is twice the radius, which can be found using the formula (D = 2r). For other shapes, like an ellipse, the diameter can vary depending on the axes, but is typically defined as the longest distance across the shape. In polygons, the diameter can be the longest distance between any two vertices.

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      To calculate the diameter of a shape, you first need to identify the shape type. For a circle, the diameter is twice the radius, which can be found using the formula (D = 2r). For other shapes, like an ellipse, the diameter can vary depending on the axes, but is typically defined as the longest distance across the shape. In polygons, the diameter can be the longest distance between any two vertices.
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