The net ionic equation for the reaction of NH 4 NO 3 with NaOH should be written. Concept introduction: Acid -Base reaction: The reaction between acid and base to produce a salt is called acid-base reaction. Net ionic equation: The only species which are contributes in the reaction are written in form of ions in reaction is called net ionic equation. Molarity: The concentration of the solutions is given by the term molarity and it is given by ratio between numbers of moles of solute present in litter of solution. Molarity = No .mole volume (L) Mole: The mole of compound is given by the ratio between taken mass of the compound and molar mass of the compound. Mole = Mass of the compound Molar mass of the compound Mole: The mole of the solute is calculated by multiplication of concentration of solution and volume of the solution and it is, Mole = Concentration (M)× volume (L)
The net ionic equation for the reaction of NH 4 NO 3 with NaOH should be written. Concept introduction: Acid -Base reaction: The reaction between acid and base to produce a salt is called acid-base reaction. Net ionic equation: The only species which are contributes in the reaction are written in form of ions in reaction is called net ionic equation. Molarity: The concentration of the solutions is given by the term molarity and it is given by ratio between numbers of moles of solute present in litter of solution. Molarity = No .mole volume (L) Mole: The mole of compound is given by the ratio between taken mass of the compound and molar mass of the compound. Mole = Mass of the compound Molar mass of the compound Mole: The mole of the solute is calculated by multiplication of concentration of solution and volume of the solution and it is, Mole = Concentration (M)× volume (L)
Solution Summary: The author explains that the net ionic equation for the reaction of NH_Text4TEXTNaOH should be written. The mole of the solute
The net ionic equation for the reaction of NH4NO3 with NaOH should be written.
Concept introduction:
Acid -Base reaction:
The reaction between acid and base to produce a salt is called acid-base reaction.
Net ionic equation:
The only species which are contributes in the reaction are written in form of ions in reaction is called net ionic equation.
Molarity:
The concentration of the solutions is given by the term molarity and it is given by ratio between numbers of moles of solute present in litter of solution.
Molarity=No.molevolume(L)
Mole:
The mole of compound is given by the ratio between taken mass of the compound and molar mass of the compound.
Mole=Mass ofthecompoundMolarmassofthecompound
Mole:
The mole of the solute is calculated by multiplication of concentration of solution and volume of the solution and it is,
Mole=Concentration(M)×volume(L)
(b)
Interpretation Introduction
Interpretation:
The percent purity of NH4NO3 in given sample should be calculated.
Concept introduction:
Acid -Base reaction:
The reaction between acid and base to produce a salt is called acid-base reaction.
Net ionic equation:
The only species which are contributes in the reaction are written in form of ions in reaction is called net ionic equation.
Molarity:
The concentration of the solutions is given by the term molarity and it is given by ratio between numbers of moles of solute present in litter of solution.
Molarity=No.molevolume(L)
Mole:
The mole of compound is given by the ratio between taken mass of the compound and molar mass of the compound.
Mole=Mass ofthecompoundMolarmassofthecompound
Mole:
The mole of the solute is calculated by multiplication of concentration of solution and volume of the solution and it is,
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell