One day during spring break you want to go to the beach so you look up two different beach locations (beach A and beach B). According to the weather website, the air at beach A is 20°C, 103.5 kPa, with a relative humidity of 90% and beach B is at 25°C, 99 kPa, and a relative humidity of 20%. Imagining you just took a swim and came out of the water, which beach would you choose to go so that you would feel more comfortable? Why? (Hint) Use the psychrometric chart below (same as the one in the back of your textbook) to find your reasoning. Assume 103.5 kPa and 99 kPa are both close enough to 1 atm (101.325 kPa).
One day during spring break you want to go to the beach so you look up two different beach locations (beach A and beach B). According to the weather website, the air at beach A is 20°C, 103.5 kPa, with a relative humidity of 90% and beach B is at 25°C, 99 kPa, and a relative humidity of 20%. Imagining you just took a swim and came out of the water, which beach would you choose to go so that you would feel more comfortable? Why? (Hint) Use the psychrometric chart below (same as the one in the back of your textbook) to find your reasoning. Assume 103.5 kPa and 99 kPa are both close enough to 1 atm (101.325 kPa).
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One day during spring break you want to go to the beach so you look up two different beach locations (beach A and beach B). According to the weather website, the air at beach A is 20°C, 103.5 kPa, with a relative humidity of 90% and beach B is at 25°C, 99 kPa, and a relative humidity of 20%. Imagining you just took a swim and came out of the water, which beach would you choose to go so that you would feel more comfortable? Why? (Hint) Use the psychrometric chart below (same as the one in the back of your textbook) to find your reasoning. Assume 103.5 kPa and 99 kPa are both close enough to 1 atm (101.325 kPa).
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