In the summer, humidity interacts with the outdoor temperature, making a person feel hotter due to a reduced heat loss from the skin caused by higher humidity. The temperature-humidity index, T., is what the temperature would have to be with no humidity in order to give the same heat effect One index often used is given byT, = 1.98T – 1.09(1 – H)(T – 58) – 56.9, where T is the air temperature, in degrees Fahrenheit, and H is the relative humidity, expressed as a decimal. Find the temperature-humidity index if T=81° and H = 66%. The temperature-humidity index at 81° and 66% humidity is°. (Round to one decimal place as needed.)
In the summer, humidity interacts with the outdoor temperature, making a person feel hotter due to a reduced heat loss from the skin caused by higher humidity. The temperature-humidity index, T., is what the temperature would have to be with no humidity in order to give the same heat effect One index often used is given byT, = 1.98T – 1.09(1 – H)(T – 58) – 56.9, where T is the air temperature, in degrees Fahrenheit, and H is the relative humidity, expressed as a decimal. Find the temperature-humidity index if T=81° and H = 66%. The temperature-humidity index at 81° and 66% humidity is°. (Round to one decimal place as needed.)
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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