EBK CHEMISTRY
EBK CHEMISTRY
12th Edition
ISBN: 8220102797857
Author: Chang
Publisher: YUZU
Question
Book Icon
Chapter 25, Problem 25.50QP

(a)

Interpretation Introduction

Interpretation:

For the given solution the values of Mw¯ and Mn¯ has to be calculated.

Concept Introduction:

Number average molar mass:

Number average molar mass (Mn¯) is given by

Mn¯=NiMiNiwhere,Ni-numberofmoleculeswithmolarmassMi.

Weight average molar mass:

Weight average molar mass (Mn¯) is given by

Mw¯=NiMi2NiMiwhere,Ni-numberofmoleculeswithmolarmassMi.

(a)

Expert Solution
Check Mark

Answer to Problem 25.50QP

The number average molar mass of the given solution is 3.6kg/mol.

The weight average molar mass of the given solution is 4.3kg/mol.

Explanation of Solution

Given information,

Five molecules with molar masses 1.0, 3.0, 4.0, 4.0 and 6.0kg/mol.

Calculate the number average molar mass

Mn¯=NiMiNi=[(1)(1.0)+(1)(3.0)+(2)(4.0)+(1)(6.0)]kg/mol5=185kg/mol=3.6kg/mol

The number average molar mass of the given solution is 3.6kg/mol.

Calculate the weight average molar mass

Mw¯=NiMi2NiMi=[(1)(1.0)2+(1)(3.0)2+(2)(4.0)2+(1)(6.0)2]kg/mol(1)(1.0)+(1)(3.0)+(2)(4.0)+(1)(6.0)=7818kg/mol=4.3kg/mol

The weight average molar mass of the given solution is 4.3kg/mol.

(b)

Interpretation Introduction

Interpretation:

The number average molar mass is equal to weight average molar mass when all the molecules have identical molar mass, this has to be explained.

Concept Introduction:

Number average molar mass:

Number average molar mass (Mn¯) is given by

Mn¯=NiMiNiwhere,Ni-numberofmoleculeswithmolarmassMi.

Weight average molar mass:

Weight average molar mass (Mn¯) is given by

Mw¯=NiMi2NiMiwhere,Ni-numberofmoleculeswithmolarmassMi.

(b)

Expert Solution
Check Mark

Explanation of Solution

Given information,

All the five molecules have identical molar masses 1.0 kg/mol.

Calculate the number average molar mass

Mn¯=NiMiNi=(4)(5kg/mol)4=204kg/mol=5kg/mol

The number average molar mass of the given solution is 5kg/mol.

Calculate the weight average molar mass

Mw¯=NiMi2NiMi=(4)(5kg/mol)2(4)(5kg/mol)=10020kg/mol=5kg/mol

The weight average molar mass of the given solution is 5kg/mol.

(c)

Interpretation Introduction

Interpretation:

Explanation for the comparison of weight and number average molar masses gives us information about the distribution of the size of synthetic polymers like polyethylene and poly(vinyl chloride) has to be given.

Concept Introduction:

Number average molar mass:

Number average molar mass (Mn¯) is given by

Mn¯=NiMiNiwhere,Ni-numberofmoleculeswithmolarmassMi.

Weight average molar mass:

Weight average molar mass (Mn¯) is given by

Mw¯=NiMi2NiMiwhere,Ni-numberofmoleculeswithmolarmassMi.

(c)

Expert Solution
Check Mark

Explanation of Solution

Given information,

Polyethylene and poly(vinyl chloride) is given as example.

The number and weight average molar mass values will be closer when a small spread in the distribution of sizes of polymer chains in the sample.

On the other hand, the number and weight average molar mass values will have larger difference when a large spread in the distribution of sizes of polymer chains in the sample.

(d)

Interpretation Introduction

Interpretation:

Myoglobin and cytochrome c have the same number and weight average molar mass values, but this is not the case for hemoglobin this has to be explained.

Concept Introduction:

Number average molar mass:

Number average molar mass (Mn¯) is given by

Mn¯=NiMiNiwhere,Ni-numberofmoleculeswithmolarmassMi.

Weight average molar mass:

Weight average molar mass (Mn¯) is given by

Mw¯=NiMi2NiMiwhere,Ni-numberofmoleculeswithmolarmassMi.

(d)

Expert Solution
Check Mark

Explanation of Solution

Given information,

Myoglobin and cytochrome c have the same number and weight average molar mass values, but this is not true in the case for haemoglobin.

Myoglobin and cytochrome c have no subunits so there are no dissociations and hence both have equal number and weight average molar mass values (i.eM¯n=M¯w).

On the other hand, haemoglobin molecule has four subunits and in solution those molecules will dissociate to a varying extent so there is a distribution of molar mass (i.eM¯nM¯w).

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
4. A polymer with a chemical formula C,HyN, has a chemical composition of 62.07% C, 13.79% H and 24.14% N. It has a molecular weight of 116 g mol·l. The molecular weight distributions of this polymer is given as: Molecular Weight Range (g mol·') 2000 – 2500 Number Fraction 0.04 2500 – 3000 0.25 3000 3500 0.30 3500 – 4000 0.42 4000 – 4500 0.08 4500 – 5000 0.02 Determine the following: Empirical formula of the polymer. b. Molecular formula of the polymer. Name the polymer. d. Number average molecular weight. Degree of polymerization. a. c. е.
The structure shown is an example of a type of macromolecule (carbohydrate, lipid, protein, or nucleic acid) that is an important biological polymer. Identify the type of macromolecule shown, the type of monomer it is made from, how you came to your conclusion and the general types of important biological functions of this type of macromolecule in the cell. 0=210 + OCH₂ NH₂ OH OH
How does a nucleus for a semi-crystalline polymer form crystalline nuclei, and how do they grow? Two semi-crystalline polymers with the same composition but with molecular weights that differ by a 5 are cooled to produce the same microstructure. Which will be stronger, which will be tougher, and why"
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Chemistry: The Molecular Science
Chemistry
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:Cengage Learning
Text book image
Chemistry for Engineering Students
Chemistry
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Cengage Learning