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How do you get possible dimensions with a given total area? - Answers

To find possible dimensions for a given total area, you can use the formula for the area of a rectangle, which is Area = length × width. Rearranging this, you can express the width as width = Area / length. By selecting different values for the length, you can calculate the corresponding width, ensuring that both dimensions are positive. This approach can be applied to other shapes by using their respective area formulas.



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How do you get possible dimensions with a given total area? - Answers

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

To find possible dimensions for a given total area, you can use the formula for the area of a rectangle, which is Area = length × width. Rearranging this, you can express the width as width = Area / length. By selecting different values for the length, you can calculate the corresponding width, ensuring that both dimensions are positive. This approach can be applied to other shapes by using their respective area formulas.



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

How do you get possible dimensions with a given total area? - Answers

To find possible dimensions for a given total area, you can use the formula for the area of a rectangle, which is Area = length × width. Rearranging this, you can express the width as width = Area / length. By selecting different values for the length, you can calculate the corresponding width, ensuring that both dimensions are positive. This approach can be applied to other shapes by using their respective area formulas.

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      To find possible dimensions for a given total area, you can use the formula for the area of a rectangle, which is Area = length × width. Rearranging this, you can express the width as width = Area / length. By selecting different values for the length, you can calculate the corresponding width, ensuring that both dimensions are positive. This approach can be applied to other shapes by using their respective area formulas.
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