(a) Interpretation: The normality of the given solution is to be calculated. 25.2 mL of 0.105 M HCl diluted with water to a total volume of 75.3 mL. 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. 25.2 mL of 0.105 M HCl diluted with water to a total volume of 75.3 mL. 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 .
The normality of the given solution is to be calculated.
25.2 mL of 0.105 M HCl diluted with water to a total volume of 75.3 mL.
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.
0.253M
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,
Normality=Molarity×NumberofH+orOH−ions.
Interpretation Introduction
(c)
Interpretation:
The normality of the given solution is to be calculated.
0.00103M
CaOH2.
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,
Identify the structure of the PTH derivative generated after two rounds of Edman degradation.
Use the data below from an electron impact mass spectrum of a pure compound to deduce its structure. Draw your structure in the
drawing window.
Data selected from the NIST
WebBook,
https://webbook.nist.gov/chemistry/
m/z
Relative intensity
31
0.5
30
26
29
22
28
100
27
33
26
23
15
4
• You do not have to consider stereochemistry.
You do not have to explicitly draw H atoms.
• In cases where there is more than one answer, just draw one.
妊
n
?
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for this question.
Write the molecular formula for a compound with the possible elements C, H, N and O that exhibits a molecular ion at M+ = 98.1106.
Exact Masses of the Most Abundant Isotope of
Selected Elements
Isotope Natural abundance (%) Exact mass
1H
99.985
1.008
12C
98.90
12.000
14N
99.63
14.003
160
99.76
15.995
Molecular formula
(In the order CHNO, with no subscripts)