Start with a temperature of 35°C, and assume that 20 grams of water per kg of air (i.e. 20gH₂O/kgAir) are present as water vapor in the atmosphere. 1. What is the Water Vapor Capacity? 2. What is the Specific Humidity? 3. Calculate the Relative Humidity (use 1 decimal, and make sure you round correctly).
Start with a temperature of 35°C, and assume that 20 grams of water per kg of air (i.e. 20gH₂O/kgAir) are present as water vapor in the atmosphere. 1. What is the Water Vapor Capacity? 2. What is the Specific Humidity? 3. Calculate the Relative Humidity (use 1 decimal, and make sure you round correctly).
Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Publisher:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Chapter1: The Study Of Minerals
Section: Chapter Questions
Problem 1LR
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how are these done

Transcribed Image Text:1572611/take
Start with a temperature of 35°C, and assume that 20 grams of water per kg of air (i.e.
20gH₂O/kgAir) are present as water vapor in the atmosphere.
1. What is the Water Vapor Capacity?
2. What is the Specific Humidity?
3. Calculate the Relative Humidity (use 1 decimal, and make sure you round correctly).
4. Show your calculation. Just write down the numbers (so that the computer can recognize it; for
me on exams, you will write down the units as well!)
The temperature now decreases to 30°C.
5. What is the Water Vapor Capacity?
✩
7 10

Transcribed Image Text:Saturation Humidity in
Grams H₂O per kg air
3
40
30
20
10
0-
-40
+
-20
20
0
Temperature (deg.C)
0
8
F7
20
6 2
40
C
3
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