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) Match the gas law its the description(s).(4 pts) a. Boyle\'s Law b. Dalton\'s

ID: 3516160 • Letter: #

Question

) Match the gas law its the description(s).(4 pts) a. Boyle's Law b. Dalton's Law c. Henry's Law If a patient breathes air highly concentrated in oxygen (such as in a hyperbaric chamber). a higher percentage of oxygen will dissolve in the blood and tissues. The total atmospheric pressure is due mostly to pressure caused by nitrogen, partly to pO2 and slightly to pCO2 Under high pN2, more nitrogen dissolves in blood. The bends occurs when the pressure decreases and nitrogen forms bubbles in tissue as it comes out of solution. As the size of the thorax increases, the pressure within it decreases 5) For each of the three gases below (02, CO2 and H:0 vapor), rank the areas in order of decreasing concentrations. For example, if the concentration of 02 is highest in the alveoli, then that area receives a 1. Then next lowest area would receive a 2, etc. Treat each gas separately (4 pts) O 1 alveoli tissue cells external atmosphere Co alveoli -tissue cells external atmosphere HO: alveoli external atmosphere 6) with increasing altitude, the air becomes thinner, gas molecules are farther apart, so atmospheric pressure decreases. Atop a 10,000 mountain peak atmospheric pressure is 523 mm Hg. Oxygen still accounts for 21% of the total pressure. Calculate POz at this elevation.- zunt2 pts) How does this compare to the POi at sea level? (1 pt) What effect would this elevation have on the blood -increase, decrease or no change? (1 pt) pressure gradient between alveolar air and alveolar hat effect would this pressure gradient have on the ability of oxygen to move into blood increase, decrease or no change? Explain your answer. (2 pts) Focus

Explanation / Answer

Ans 1(A):- Boyle's law-As the size of thorax increase the pressure within it decreases.

(B):-Dalton's law-total atmospheric pressure is due mostly to pressure caused by nitrogen partly to pO2 and slightly to poo2.

( C):-Henry's law:-if a patient breaths highly concentration in oxygen a higher percentage of oxygen will be dissolved