(a) Interpretation: The normality of the given solution is to be calculated. 0.250 M HCl . Concept Introduction: The atomic mass of an element is defined as the sum of number of protons and number of neutrons. Molar mass of an element is determined from atomic mass of an element. The number of moles is calculated by the formula, Moles = Mass g Molar mass The molarity is calculated by the formula, Molarity = Number of moles of solute Volume of solution L The normality of the solution is calculated by the formula, Normality = Molarity × Number of H + or OH − ions .
(a) Interpretation: The normality of the given solution is to be calculated. 0.250 M HCl . Concept Introduction: The atomic mass of an element is defined as the sum of number of protons and number of neutrons. Molar mass of an element is determined from atomic mass of an element. The number of moles is calculated by the formula, Moles = Mass g Molar mass The molarity is calculated by the formula, Molarity = Number of moles of solute Volume of solution L The normality of the solution is calculated by the formula, Normality = Molarity × Number of H + or OH − ions .
Solution Summary: The author explains that the atomic mass of an element is defined as the sum of protons and neutrons. The molarity of HCl solution is calculated by the formula.
The normality of the given solution is to be calculated.
0.250M
HCl.
Concept Introduction:
The atomic mass of an element is defined as the sum of number of protons and number of neutrons. Molar mass of an element is determined from atomic mass of an element.
The number of moles is calculated by the formula,
Moles=MassgMolarmass
The molarity is calculated by the formula,
Molarity=NumberofmolesofsoluteVolumeofsolutionL
The normality of the solution is calculated by the formula,
Normality=Molarity×NumberofH+orOH−ions.
Interpretation Introduction
(b)
Interpretation:
The normality of the given solution is to be calculated.
0.105M
H2SO4.
Concept Introduction:
The atomic mass of an element is defined as the sum of number of protons and number of neutrons. Molar mass of an element is determined from atomic mass of an element.
The number of moles is calculated by the formula,
Moles=MassgMolarmass
The molarity is calculated by the formula,
Molarity=NumberofmolesofsoluteVolumeofsolutionL
The normality of the solution is calculated by the formula,
Normality=Molarity×NumberofH+orOH−ions.
Interpretation Introduction
(c)
Interpretation:
The normality of the given solution is to be calculated.
5.3×10−2M
H3PO4.
Concept Introduction:
The atomic mass of an element is defined as the sum of number of protons and number of neutrons. Molar mass of an element is determined from atomic mass of an element.
The number of moles is calculated by the formula,
Moles=MassgMolarmass
The molarity is calculated by the formula,
Molarity=NumberofmolesofsoluteVolumeofsolutionL
The normality of the solution is calculated by the formula,
3.3 Consider the variation of molar Gibbs energy with pressure.
3.3.1 Write the mathematical expression for the slope of graph of molar Gibbs energy against
3.3.2
pressure at constant temperature.
Draw in same diagram graphs showing variation with pressure of molar Gibbs energies of a
substance in gaseous, liquid and solid forms at constant temperature.
3.3.3 Indicate in your graphs melting and boiling points.
3.3.4 Indicate for the respective phases the regions of relative stability.
In 2-chloropropane, the signal for the H on the C next to Cl should be split into how many peaks?
4.4
Consider as perfect gas 3.0 mol of argon gas to which 229 J of energy is supplied as heat at
constant pressure and temperature increases by 2.55 K. Calculate
4.4.1 constant pressure molar heat capacity.
4.4.2 constant volume molar heat capacity.
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