An aqueous solution is 14 % NH 4 Cl by mass. Given the density of the solution, molality, mole fraction and molarity of NH 4 Cl in solution has to be determined. Concept Introduction: Molality is one of the many parameters that is used to express concentration of a solution . It is expressed as, Molality = n u m b e r of m o l e s o f solute m a s s of solvent in kg Molarity is one of the many parameters that is used to express concentration of a solution . It is expressed as, Molarity = n u m b e r of m o l e s o f solute v o l u m e of solution in L A solution is at least made up of two components. Mole fraction of a component in the solution correlates to the ratio of number of moles of that component to the total number of moles. It is expressed as, Mole fraction = n u m b e r of moles of a component t o t a l number of moles in the solution Mass percent is one of the many parameters that is used to express concentration of a solution . It is expressed as, Mass percent = m a s s of solute m a s s of solution × 100%
An aqueous solution is 14 % NH 4 Cl by mass. Given the density of the solution, molality, mole fraction and molarity of NH 4 Cl in solution has to be determined. Concept Introduction: Molality is one of the many parameters that is used to express concentration of a solution . It is expressed as, Molality = n u m b e r of m o l e s o f solute m a s s of solvent in kg Molarity is one of the many parameters that is used to express concentration of a solution . It is expressed as, Molarity = n u m b e r of m o l e s o f solute v o l u m e of solution in L A solution is at least made up of two components. Mole fraction of a component in the solution correlates to the ratio of number of moles of that component to the total number of moles. It is expressed as, Mole fraction = n u m b e r of moles of a component t o t a l number of moles in the solution Mass percent is one of the many parameters that is used to express concentration of a solution . It is expressed as, Mass percent = m a s s of solute m a s s of solution × 100%
An aqueous solution is 14 %NH4Cl by mass. Given the density of the solution, molality, mole fraction and molarity of NH4Cl in solution has to be determined.
Concept Introduction:
Molality is one of the many parameters that is used to express concentration of a solution. It is expressed as,
Molality = number of molesof solutemass of solvent in kg
Molarity is one of the many parameters that is used to express concentration of a solution. It is expressed as,
Molarity = number of molesof solutevolume of solution in L
A solution is at least made up of two components. Mole fraction of a component in the solution correlates to the ratio of number of moles of that component to the total number of moles. It is expressed as,
Mole fraction = number of moles of a componenttotal number of moles in the solution
Mass percent is one of the many parameters that is used to express concentration of a solution. It is expressed as,
Mass percent = mass of solutemass of solution× 100%
Expert Solution & Answer
Answer to Problem 12.89QP
Molality of 14% NH4Cl is determined as 3.04m.
Mole fraction of NH4Cl in 14% NH4Cl is determined as 0.520.
Molarity of 14% NH4Cl is determined as 2.72M.
Explanation of Solution
Assume that volume of solution is 1.000 L which is equivalent to 1.040 kg as density of the solution is 1.040 g/mL. Then mass of ammonium chloride used to prepare 14 %NH4Cl solution is calculated as,
Mass percent of NH4Cl = mass of NH4Clmass of solution× 100%
Rearranging the above expression,
mass of NH4Cl = Mass percent× mass of solution
Substitute the known values,
mass of NH4Cl = 14% × 1.040 kg= 0.1456 kg
As we know,
Mass of solution = mass of solute + mass of solvent = mass of NH4Cl + mass of water
Mass of the solute, NH4Cl is calculated above. Therefore,
1.040 kg of solution = 0.1456 kg + mass of watermass of water = 1.040 kg - 0.1456 kg = 0.8944 kg
Number of moles of ammonium chloride and water are calculated as,
no.of moles of NH4Cl= mass of NH4Clmolar mass of NH4Cl=145.6 g53.49 g/mol = 2.72 molNo.of moles of water= mass of H2Omolar mass of H2O=894.4 g18.02 g/mol = 49.65 mol
Totalnumberofmolesinsolution,= no.of moles of NH4Cl + no.of moles of H2O= 2.72 mol + 49.65 mol= 52.37 mol
Molality of the solution is calculated as,
Molality of NH4Cl= number of molesof NH4Clmass of H2O in kg=2.72 mol0.8944 kg= 3.043 m ≈3.04 m
Molarity of the solution is calculated as,
Molarity of NH4Cl= number of molesNH4Clvolume of solution in L=2.72 mol1.000 L = 2.72 M
Mole fraction of ammonium chloride is calculated as,
Mole fraction of NH4Cl= number of molesNH4Cltotal number of moles in solution=2.72 mol52.37 mol = 0.0519 = 0.0520
Conclusion
Given the density of aqueous solution of 14 %NH4Cl, the molality, mole fraction and molarity of NH4Cl in solution are determined by calculating the number of moles of NH4Cl in solution.
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3) The following molecule, chloral is a common precursor to chloral hydrate, an acetal type
molecule that was a first-generation anesthetic. Draw a mechanism that accounts for tis
formation and speculate why it does not require the use of an acid catalyst, like most
hemiacetal and acetal reaction: (10 pts)
H
H₂O
You are a Quality Manager for a very well-known food ingredient company that produces umami powder, and you are responsible for setting specification limits.
The net weight (in grams) of bags of unami powder is monitored by taking samples of six bags on an hourly basis during production. The label on every bag reports a contents of 1KG umami powder.
The process mean is μ = 1012 g, and when the process is properly adjusted, it varies with σ = 11 g.
QUESTION: Your organisation strives to ensure that >99.97% of bags of umami powder produced conforms to specification. What performance process index value is required to achieve this process yield?
Calculate PPK using the following formula:
Ppk = (USL – mean)/3 σ
Ppk = (mean -LSL)/ 3 σ
You are a Quality Manager for a very well-known food ingredient company that produces umami powder, and you are responsible for setting specification limits.
The net weight (in grams) of bags of unami powder is monitored by taking samples of six bags on an hourly basis during production. The label on every bag reports a contents of 1KG umami powder.
The process mean is μ = 1012 g, and when the process is properly adjusted, it varies with σ = 11 g.
QUESTION: Provide a valid and full justification as to whether you would advise your manager that the process is satisfactory when it is properly adjusted, or would you seek their approval to improve the process?
Chapter 12 Solutions
OWLv2 for Ebbing/Gammon's General Chemistry, 11th Edition, [Instant Access], 1 term (6 months)