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AveGali [126]
3 years ago
12

In the air we breathe and in the compressed air in divers' tanks, there is, in addition to oxygen, nitrogen gas (N2). This gas e

nters and leaves the lungs without consequences for the body, but more than 30 m deep in the water, this gas dissolves in the bloodstream.
When divers rise to the surface abruptly, the pressure decreases, which causes the solubility of dissolved nitrogen to be reduced and consequently this gas to leave the blood in a violent way. This process can cause health problems or even the death of the diver, so it is recommended that they climb slowly and taking breaks.
a) Is solubility an intensive or extensive property?
Chemistry
1 answer:
nirvana33 [79]3 years ago
8 0
I think it’s (A) because that’s the only letter there :)
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If acetic acid is the only acid that vinegar contains (ka=1.8×10−5), calculate the concentration of acetic acid in the vinegar.
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Ethanoic (Acetic) acid is a weak acid and do not dissociate fully. Therefore its equilibrium state has to be considered here.

CH_{3}COOH \ \textless \ ---\ \textgreater \   H^{+} + CH_{3}COO^{-}

In this case pH value of the solution is necessary to calculate the concentration but it's not given here so pH = 2.88 (looked it up)

pH = 2.88 ==> [H^{+}]  = 10^{-2.88} =  0.001 moldm^{-3}

The change in Concentration Δ [CH_{3}COOH]= 0.001 moldm^{-3}


                                  CH3COOH          H+           CH3COOH    
Initial  moldm^{-3}                      x           0                     0
                                                                                                                       
Change moldm^{-3}        -0.001            +0.001           +0.001
                                                                                                       
Equilibrium moldm^{-3}      x- 0.001      0.001             0.001
                                                                              

Since the k_{a} value is so small, the assumption 
[CH_{3}COOH]_{initial} = [CH_{3}COOH]_{equilibrium} can be made.

k_{a} = [tex]= 1.8*10^{-5}  =  \frac{[H^{+}][CH_{3}COO^{-}]}{[CH_{3}COOH]} =  \frac{0.001^{2}}{x}

Solve for x to get the required concentration.

note: 1.)Since you need the answer in 2SF don&t round up values in the middle of the calculation like I've done here.

         2.) The ICE (Initial, Change, Equilibrium) table may come in handy if you are new to problems of this kind

Hope this helps! 



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creativ13 [48]

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4 0
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