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How many 50lb bags of sand will cover 15ft round area? - Answers

To determine how many 50 lb bags of sand are needed to cover a 15-foot round area, first calculate the area of the circle using the formula ( A = \pi r^2 ). The radius ( r ) is 7.5 feet, so the area is approximately 176.71 square feet. If you assume a depth of 1 inch for the sand, you will need about 0.5 cubic yards of sand, which is roughly 13-14 bags of 50 lb sand, depending on the sand's density and compaction.



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How many 50lb bags of sand will cover 15ft round area? - Answers

https://math.answers.com/math-and-arithmetic/How_many_50lb_bags_of_sand_will_cover_15ft_round_area

To determine how many 50 lb bags of sand are needed to cover a 15-foot round area, first calculate the area of the circle using the formula ( A = \pi r^2 ). The radius ( r ) is 7.5 feet, so the area is approximately 176.71 square feet. If you assume a depth of 1 inch for the sand, you will need about 0.5 cubic yards of sand, which is roughly 13-14 bags of 50 lb sand, depending on the sand's density and compaction.



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https://math.answers.com/math-and-arithmetic/How_many_50lb_bags_of_sand_will_cover_15ft_round_area

How many 50lb bags of sand will cover 15ft round area? - Answers

To determine how many 50 lb bags of sand are needed to cover a 15-foot round area, first calculate the area of the circle using the formula ( A = \pi r^2 ). The radius ( r ) is 7.5 feet, so the area is approximately 176.71 square feet. If you assume a depth of 1 inch for the sand, you will need about 0.5 cubic yards of sand, which is roughly 13-14 bags of 50 lb sand, depending on the sand's density and compaction.

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      To determine how many 50 lb bags of sand are needed to cover a 15-foot round area, first calculate the area of the circle using the formula ( A = \pi r^2 ). The radius ( r ) is 7.5 feet, so the area is approximately 176.71 square feet. If you assume a depth of 1 inch for the sand, you will need about 0.5 cubic yards of sand, which is roughly 13-14 bags of 50 lb sand, depending on the sand's density and compaction.
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