a) An engineer has a task to build a silo for grain storage with height of 3 m. To give a better grain flow, the silo is designed a cone-like geometry, where its biggest radius is on the top. The geometry should follow the function below: H = 2/w2 + L2 – 1, where h height of the silo, W = half width of the roof, and L = half horizontal length of the silo. i) Determine the radius of each section of the silo for height interval 0.5 m.

Elementary Geometry For College Students, 7e
7th Edition
ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
ChapterP: Preliminary Concepts
SectionP.CT: Test
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a) An engineer has a task to build a silo for grain storage with height of 3 m.
To give a better grain flow, the silo is designed a cone-like geometry,
where its biggest radius is on the top. The geometry should follow the
function below:
Q3
H = 2/w2 + L2 – 1,
where h height of the silo, W = half width of the roof, and L = half
horizontal length of the silo.
Determine the radius of each section of the silo for height interval
0.5 m.
i)
Transcribed Image Text:a) An engineer has a task to build a silo for grain storage with height of 3 m. To give a better grain flow, the silo is designed a cone-like geometry, where its biggest radius is on the top. The geometry should follow the function below: Q3 H = 2/w2 + L2 – 1, where h height of the silo, W = half width of the roof, and L = half horizontal length of the silo. Determine the radius of each section of the silo for height interval 0.5 m. i)
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