Oxford University Press, Online Resource Centre, Chapter 16.

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Atkins & de Paula: Elements of Physical Chemistry 5e

Chapter 16

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Question 1

The number average and weight average molar masses of a sample of poly(ethylene oxide) are 4.44 kg mol-1 and 4.53 kg mol-1 respectively. Calculate the heterogeneity index.

Question 2

Analysis of a sample of poly(styrene) in benzene solution showed the following distribution of chain lengths. Use the data to calculate the heterogeneity index of the sample.
Q.02 data

Question 3

The MALDI-TOF mass spectrum of a sample of poly(methylphenylsilane) was recorded in a matrix containing potassium chloride, KCl. Peaks corresponding to polymer chains with 5, 6, 7 and 8 monomer units were observed at masses of 785, 905, 1025 and 1145 g mol-1 respectively. Which of the following structures is consistent with these observations?

Question 4

Calculate the contour length of a poly(methylmethacrylate) polymer chain of 500 monomer units if the monomer length is 2.23 Å.

Question 5

The root-mean-square distance between the ends of a polymer chain was found to be 6.2 nm. Estimate the number of monomers in the chain, given that the length of each monomer unit is 2.1 Å.

Question 6

Calculate the radius of gyration for a poly(vinylchloride), -(C2H3Cl)n-, with a molar mass of 450 kg mol-1. Assume that the length of a monomer unit is 160 pm.

Question 7

Calculate the change in the conformational entropy when the length of a polymer chain consisting of N monomer units is compressed by the equivalent of 20% of its length.

Question 8

What is the magnitude of the restoring force exerted when an elastomer chain is extended by 25% at 25°C? Assume that the length of each bond within the elastomer backbone is 154 pm.

Question 9

Calculate the work done at standard pressure in forming a spherical air bubble of radius 2.0 cm from a droplet of a soap solution with a surface tension of 25.5 mN m-1.

Question 10

When a cylindrical capillary column of internal radius 0.25 mm is inserted into glycerol, C3H5(OH)3, at 25°C the liquid rises to a height of 4.1 cm up the tube. Determine the surface tension of glycerol at this temperature, given that its density is 1.261 g cm-3.

 
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