Given that limit for Barium in drinking water is 2 ppm , Mass percent of Barium allowed in drinking water has to be calculated. Concept Introduction: Mass percent is one of parameters used to express concentration of a solution . It is expressed as, Mass percent of a solute = m a s s of solute m a s s of solution × 100% Parts per million (ppm) is a term used to express the concentration of an element or any other substance in a material. It is expressed as, ppm = m a s s of solute m a s s of solution × 10 6
Given that limit for Barium in drinking water is 2 ppm , Mass percent of Barium allowed in drinking water has to be calculated. Concept Introduction: Mass percent is one of parameters used to express concentration of a solution . It is expressed as, Mass percent of a solute = m a s s of solute m a s s of solution × 100% Parts per million (ppm) is a term used to express the concentration of an element or any other substance in a material. It is expressed as, ppm = m a s s of solute m a s s of solution × 10 6
Author: Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Given that limit for Barium in drinking water is 2 ppm, Mass percent of Barium allowed in drinking water has to be calculated.
Concept Introduction:
Mass percent is one of parameters used to express concentration of a solution. It is expressed as,
Mass percent of a solute = mass of solutemass of solution× 100%
Parts per million (ppm) is a term used to express the concentration of an element or any other substance in a material. It is expressed as,
ppm = mass of solutemass of solution× 106
(a)
Expert Solution
Answer to Problem 12.119QP
Mass percentage of permissible level of Barium in drinking water is 2×10-4%.
Explanation of Solution
Parts per million is expressed as,
ppm = mass of solutemass of solution× 106
The term mass of solutemass of solution corresponds to mass percent of the solute. By comparing and rewriting the two expressions, 2ppm Barium is written in mass percent as -
2ppm=mass of Bamass of Solution×106mass of solutemass of solution= 2×10−6mass percent= 2×10−6×102 g= 2×10−4%
(b)
Interpretation Introduction
Interpretation:
Given that limit for Barium in drinking water is 2 ppm, Molarity of solution of Barium salt of 2 ppm has to be calculated given the density of solution as 1.0 g/mL.
Concept Introduction:
Mass percent is one of parameters used to express concentration of a solution. It is expressed as,
Mass percent of a solute = mass of solutemass of solution× 100%
Parts per million (ppm) is a term used to express the concentration of an element or any other substance in a material. It is expressed as,
ppm = mass of solutemass of solution× 106
(b)
Expert Solution
Answer to Problem 12.119QP
Molarity of solution of 2ppm Barium is calculated as 1.4×10-5M.
Explanation of Solution
Consider 1 L of the solution. Density of the solution is 1.00 g/mL. then mass of the solution would be 103 g. calculate mass and number of moles of Barium as follows -
2ppm=mass of Bamass of Solution×106=2 ppm106×mass of solution= 2 ppm106×103 g= 0.002 g Bamoles of Ba= 0.002 g Ba×1 mol Ba137.3 g Ba= 1.4 ×10−5 mol Ba
Molarity of solution containing 2 ppm Barium is thus calculated as,
molarity=mol Baliters of solution=1.4×10−5mol Ba1 L= 1.4×10−5M
(c)
Interpretation Introduction
Interpretation:
Given that limit for Barium in drinking water is 2 ppm, the concentration of Barium has to be expressed in mg per liter.
Concept Introduction:
Mass percent is one of parameters used to express concentration of a solution. It is expressed as,
Mass percent of a solute = mass of solutemass of solution× 100%
Parts per million (ppm) is a term used to express the concentration of an element or any other substance in a material. It is expressed as,
ppm = mass of solutemass of solution× 106
(c)
Expert Solution
Answer to Problem 12.119QP
Concentration of Ba in mg per liter is 2mg/L.
Explanation of Solution
Previously we have calculated that 1 L of the solution contains 0.002 g of Barium. It is equivalent to 2 mg of Barium. Thus we could write that concentration of Barium in mg per liter is 2mg/L.
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A pdf file of your hand drawn, stepwise mechanisms for the reactions. For each reaction in the assignment, you must write each mechanism three times (there are 10 reactions, so 30 mechanisms). (A) do the work on a tablet and save as a pdf., it is expected to write each mechanism out and NOT copy and paste the mechanism after writing it just once. Everything should be drawn out stepwise and every bond that is formed and broken in the process of the reaction, and is expected to see all relevant lone pair electrons and curved arrows.
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Chapter 12 Solutions
General Chemistry - Standalone book (MindTap Course List)