An alternative to the body mass index (BMI) for estimating the health risks of obesity is A Body Shape Index (ABSI), given by the formula shown below, where w and h are the waist and height, respectively, in meters, and b is the BMI. The national Heart, Lung, and Blood Institute uses the BMI to determine whether a person is "overweight" (25 ≤ BMI <30) or "obese" (BMI ≥ 30). Complete parts (a) through (d). ABSI = W 2 3 b h 1 a. Suppose a man is 1.83 m tall with a waist of 0.885 m and a BMI of 22.9. Find the ABSI for such a person. How does this compare with the average ABSI for a 52-year-old man of 0.0831? The ABSI for this person is, which is (Round to three decimal places as neede the average ABSI for a 52-year-old man. less than greater than. the same as

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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An alternative to the body mass index (BMI) for estimating the health risks of obesity is A Body Shape Index (ABSI), given by the formula shown below, where \( w \) and \( h \) are the waist and height, respectively, in meters, and \( b \) is the BMI. The national Heart, Lung, and Blood Institute uses the BMI to determine whether a person is "overweight" (25 ≤ BMI < 30) or "obese" (BMI ≥ 30). Complete parts (a) through (d).

\[
ABSI = \frac{w}{b^{\frac{2}{3}} h^{\frac{1}{2}}}
\]

---

a. Suppose a man is 1.83 m tall with a waist of 0.885 m and a BMI of 22.9. Find the ABSI for such a person. How does this compare with the average ABSI for a 52-year-old man of 0.0831?

The ABSI for this person is [ ], which is [dropdown: less than, greater than, the same as] the average ABSI for a 52-year-old man.

*Round to three decimal places as needed.*
Transcribed Image Text:An alternative to the body mass index (BMI) for estimating the health risks of obesity is A Body Shape Index (ABSI), given by the formula shown below, where \( w \) and \( h \) are the waist and height, respectively, in meters, and \( b \) is the BMI. The national Heart, Lung, and Blood Institute uses the BMI to determine whether a person is "overweight" (25 ≤ BMI < 30) or "obese" (BMI ≥ 30). Complete parts (a) through (d). \[ ABSI = \frac{w}{b^{\frac{2}{3}} h^{\frac{1}{2}}} \] --- a. Suppose a man is 1.83 m tall with a waist of 0.885 m and a BMI of 22.9. Find the ABSI for such a person. How does this compare with the average ABSI for a 52-year-old man of 0.0831? The ABSI for this person is [ ], which is [dropdown: less than, greater than, the same as] the average ABSI for a 52-year-old man. *Round to three decimal places as needed.*
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