Ask Question
31 October, 06:38

As a storm from moves in, you notice that a column of mercury in a barometer rises to 736 mm. (a) Determine the air pressure. (b) If the mercury in the barometer is replaced with water, using the pressure you found in (a), to what height will the water level rise?

+2
Answers (1)
  1. 31 October, 08:40
    0
    The air pressure is 9.8 * 10^4 pa

    The water will rise to a height of 10.0 meter

    Explanation:

    Step 1: Data given

    As a storm from moves in, you notice that a column of mercury in a barometer rises to 736 mm.

    Step 2: Calculate the air pressure

    The Pressure against the mercury column = h*d*g = 0.736 * 13593 * 9.81 = 9.8 * 10^4 Pa

    Step 3: Calculate the height of the water

    Let the Pressure the water column for same pressure is h meter : -

    9.8 * 10^4 = h*d*g

    =>9.8*10^4 = h*1000*9.81

    =>h = 10.0 meter

    The water will rise to a height of 10.0 meter
Know the Answer?
Not Sure About the Answer?
Find an answer to your question ✅ “As a storm from moves in, you notice that a column of mercury in a barometer rises to 736 mm. (a) Determine the air pressure. (b) If the ...” in 📘 Chemistry if you're in doubt about the correctness of the answers or there's no answer, then try to use the smart search and find answers to the similar questions.
Search for Other Answers