The odor of a rotten egg is caused by hydrogen sulfide, H 2 S . Most people can detect it at a concentration of 0.15 ppb (parts per billion), meaning 0.15 L of H 2 S in 10 9 L of space. A typical student lab is 42 × 24 × 8 .6 ft. (a) At STP, how many liters of H 2 S could be present in a typical lab to have a concentration of 0.15 ppb? (b) How many milliliters of 0 .100 M Na 2 S would be needed to generate the amount of H 2 S in part (a) by the reaction of hydrochloric acid with sodium sulfide? (Assume that all of the H 2 S generated enters the atmosphere.)
The odor of a rotten egg is caused by hydrogen sulfide, H 2 S . Most people can detect it at a concentration of 0.15 ppb (parts per billion), meaning 0.15 L of H 2 S in 10 9 L of space. A typical student lab is 42 × 24 × 8 .6 ft. (a) At STP, how many liters of H 2 S could be present in a typical lab to have a concentration of 0.15 ppb? (b) How many milliliters of 0 .100 M Na 2 S would be needed to generate the amount of H 2 S in part (a) by the reaction of hydrochloric acid with sodium sulfide? (Assume that all of the H 2 S generated enters the atmosphere.)
The odor of a rotten egg is caused by hydrogen sulfide,
H
2
S
. Most people can detect it at a concentration of 0.15 ppb (parts per billion), meaning 0.15 L of
H
2
S
in
10
9
L
of space. A typical student lab is
42
×
24
×
8
.6
ft.
(a) At STP, how many liters of
H
2
S
could be present in a typical lab to have a concentration of 0.15 ppb?
(b) How many milliliters of
0
.100
M
Na
2
S
would be needed to generate the amount of
H
2
S
in part (a) by the reaction of hydrochloric acid with sodium sulfide? (Assume that all of the
H
2
S
generated enters the atmosphere.)
For a weak acid AcH, calculate the dissociated fraction (alpha), if its concentration is 1.540 mol L-1 and the concentration [H+] is 5.01x10-4 mol L-1.
If the molar conductivity at infinite dilution of HAC is A0 = 390.5 S cm² mol¹. Calculate
the Arrhenius conductivity of a 9.3% by weight solution of HAc with a pH of 3.3. Data:
molecular weight of HAC is 60.05 g/mol and the density of the solution is 1 g/cm³.
If the molar conductivity at infinite dilution of HAC is A0 = 390.5 S cm² mol¹. Calculate
the Arrhenius conductivity of a 9.3% by weight solution of HAc with a pH of 3.3. Data:
molecular weight of HAC is 60.05 g/mol and the density of the solution is 1 g/cm³.
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Step by Step Stoichiometry Practice Problems | How to Pass ChemistryMole Conversions Made Easy: How to Convert Between Grams and Moles; Author: Ketzbook;https://www.youtube.com/watch?v=b2raanVWU6c;License: Standard YouTube License, CC-BY