(a) Interpretation: The molarity of bleach and mole fraction of NaOCl in the bleach needs to be determined. Concept introduction: Solution stoichiometry involves the calculation of the concentration of solutions in the given conditions of volumes, moles, etc. There are various ways to calculate the concentration of solutions such as molarity, molality, mole fraction, ppm, ppb, etc. Mole fraction is the ratio of moles of substance and total moles in the solution or mixture. One ppm stands for part per million or milligrams per liter (mg/L), whereas parts per billion (ppb) is one part in 1 billion. Molality represents the moles of solute dissolve in per kilograms of the solvent. The mathematical expression of molality is: Molality= Moles of solute mass of solvent (kg) Mole fraction of any component in a solution can be calculated as: Mole fracation of A = Moles of A moles of A + moles of B
(a) Interpretation: The molarity of bleach and mole fraction of NaOCl in the bleach needs to be determined. Concept introduction: Solution stoichiometry involves the calculation of the concentration of solutions in the given conditions of volumes, moles, etc. There are various ways to calculate the concentration of solutions such as molarity, molality, mole fraction, ppm, ppb, etc. Mole fraction is the ratio of moles of substance and total moles in the solution or mixture. One ppm stands for part per million or milligrams per liter (mg/L), whereas parts per billion (ppb) is one part in 1 billion. Molality represents the moles of solute dissolve in per kilograms of the solvent. The mathematical expression of molality is: Molality= Moles of solute mass of solvent (kg) Mole fraction of any component in a solution can be calculated as: Mole fracation of A = Moles of A moles of A + moles of B
Solution Summary: The author explains the molarity of bleach and mole tion of NaOCl in the bleach.
The molarity of bleach and mole fraction of NaOCl in the bleach needs to be determined.
Concept introduction:
Solution stoichiometry involves the calculation of the concentration of solutions in the given conditions of volumes, moles, etc. There are various ways to calculate the concentration of solutions such as molarity, molality, mole fraction, ppm, ppb, etc. Mole fraction is the ratio of moles of substance and total moles in the solution or mixture. One ppm stands for part per million or milligrams per liter (mg/L), whereas parts per billion (ppb) is one part in 1 billion.
Molality represents the moles of solute dissolve in per kilograms of the solvent. The mathematical expression of molality is:
Molality=Moles of solutemass of solvent (kg)
Mole fraction of any component in a solution can be calculated as:
Mole fracation of A =Moles of Amoles of A + moles of B
1. Show the steps necessary to make 2-methyl-4-nonene using a
Wittig reaction. Start with triphenylphosphine and an alkyl
halide. After that you may use any other organic or inorganic
reagents.
2. Write in the product of this reaction:
CH3
CH₂
(C6H5)₂CuLi
H₂O+
3. Name this compound properly, including stereochemistry.
H₂C
H3C
CH3
OH
4. Show the step(s) necessary to transform the compound on the
left into the acid on the right.
Bri
CH2
5. Write in the product of this
LiAlH4
Br
H₂C
OH
What are the major products of the following reaction? Please provide a detailed explanation and a drawing to show how the reaction proceeds.