8 Post-Lab Regions of high ion concentration Pers Using Polymers to Investigate the Behavior of Molecular and Ionic Compounds COONa COONa c=0 Part A 1. What is a polymer? Monomer? COONa COONa C=O COOH COOH Crosslinking molecule O COONa COONa Figure 8.2. Two sodium polyacrylate polymer chains connected by a crosslink- ing molecule. The crosslinking creates a space for water to be trapped between the polymer chains. 2. Look up and draw the monomers used to make sodium polyacrylate polymer chains.

Chemistry: An Atoms First Approach
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ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
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Chapter21: Organic And Biological Molecules
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8
Post-Lab
Regions of high
ion concentration
Pers
Using Polymers to Investigate
the Behavior of Molecular and
Ionic Compounds
COONa COONa c=0
Part A
1. What is a polymer? Monomer?
COONa COONa C=O COOH
COOH
Crosslinking molecule
O
COONa
COONa
Figure 8.2. Two sodium polyacrylate polymer chains connected by a crosslink-
ing molecule. The crosslinking creates a space for water to be trapped between the
polymer chains.
2. Look up and draw the monomers used to make sodium polyacrylate polymer chains.
Transcribed Image Text:8 Post-Lab Regions of high ion concentration Pers Using Polymers to Investigate the Behavior of Molecular and Ionic Compounds COONa COONa c=0 Part A 1. What is a polymer? Monomer? COONa COONa C=O COOH COOH Crosslinking molecule O COONa COONa Figure 8.2. Two sodium polyacrylate polymer chains connected by a crosslink- ing molecule. The crosslinking creates a space for water to be trapped between the polymer chains. 2. Look up and draw the monomers used to make sodium polyacrylate polymer chains.
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