The partial pressures of each gas in the given sample containing mixture of 50 % helium and 50 % xenon by mass are needed to be determined, it the total pressure of sample is given as 600 torr . Concept introduction: Partial pressure of a gas in a mixture of gases is the pressure of that gas when it alone. Partial pressure of a gas in terms of its mole fraction and total pressure is, ` P A = χ A × P TOTAL Mole fraction of a molecule in a mixture is the ratio of number of moles of particular molecule to the sum of number of moles of all molecules in the mixture. Equation for mole fraction of a molecule in a mixture of two molecules (A and B) is, molecule fraction of A, ( χ A ) = numbers of moles of A (n A ) numbers of moles of A (n A ) + numbers of moles of B (n B ) Number of moles of a substance from its given mass is, Number of moles = Given mass Molecular mass Total pressure of a mixture of gases is the sum of individual partial pressures of constituted gases. To determine: the partial pressure of each gas in the given mixture of 50 % helium and 50 % xenon by mass.
The partial pressures of each gas in the given sample containing mixture of 50 % helium and 50 % xenon by mass are needed to be determined, it the total pressure of sample is given as 600 torr . Concept introduction: Partial pressure of a gas in a mixture of gases is the pressure of that gas when it alone. Partial pressure of a gas in terms of its mole fraction and total pressure is, ` P A = χ A × P TOTAL Mole fraction of a molecule in a mixture is the ratio of number of moles of particular molecule to the sum of number of moles of all molecules in the mixture. Equation for mole fraction of a molecule in a mixture of two molecules (A and B) is, molecule fraction of A, ( χ A ) = numbers of moles of A (n A ) numbers of moles of A (n A ) + numbers of moles of B (n B ) Number of moles of a substance from its given mass is, Number of moles = Given mass Molecular mass Total pressure of a mixture of gases is the sum of individual partial pressures of constituted gases. To determine: the partial pressure of each gas in the given mixture of 50 % helium and 50 % xenon by mass.
Solution Summary: The author explains the partial pressures of each gas in a given sample containing mixture of helium and xenon by mass are needed to be determined, and the total pressure of sample is given as
Interpretation: The partial pressures of each gas in the given sample containing mixture of
50% helium and
50% xenon by mass are needed to be determined, it the total pressure of sample is given as
600torr.
Concept introduction:
Partial pressure of a gas in a mixture of gases is the pressure of that gas when it alone.
Partial pressure of a gas in terms of its mole fraction and total pressure is,
`
PA=χA×PTOTAL
Mole fraction of a molecule in a mixture is the ratio of number of moles of particular molecule to the sum of number of moles of all molecules in the mixture.
Equation for mole fraction of a molecule in a mixture of two molecules (A and B) is,
3. Arrange the different acids in Exercise B # 2 from the strongest (1) to the weakest acid
(10).
1.
2.
(strongest)
3.
4.
5.
6.
7.
8.
9.
10
10.
(weakest)
Name
Section
Score
Date
EXERCISE B
pH, pOH, pка, AND PKD CALCULATIONS
1. Complete the following table.
Solution
[H+]
[OH-]
PH
РОН
Nature of Solution
A
2 x 10-8 M
B
1 x 10-7 M
C
D
12.3
6.8
2. The following table contains the names, formulas, ka or pka for some common acids. Fill
in the blanks in the table. (17 Points)
Acid Name
Formula
Dissociation reaction
Ka
pka
Phosphoric acid
H₂PO₁
H3PO4
H++ H₂PO
7.08 x 10-3
Dihydrogen
H₂PO
H₂PO
H+ HPO
6.31 x 10-6
phosphate
Hydrogen
HPO₁
12.4
phosphate
Carbonic acid
H2CO3
Hydrogen
HCO
6.35
10.3
carbonate or
bicarbonate
Acetic acid
CH,COOH
4.76
Lactic acid
CH₂CHOH-
COOH
1.38 x 10
Ammonium
NH
5.63 x 10-10
Phenol
CH₂OH
1 x 10-10
Protonated form
CH3NH3*
3.16 x 10-11
of methylamine
Indicate whether it is true that Co(III) complexes are very stable.
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