Chapter 13. Give 5 examples of wetting in polymer chemistry "problems", much like the wetting problem of fibers in a spunbond. Describe the problem and the solution (or attempts) in about a paragraph. Examples I can think of include food films, paint, low adhesion backsize, etc. These are all examples of changing the surface frictional properties. Chapter 14. Try question 14.4. This is a hard (I thought) problem. Use equation 14.54, and rearrange. Keep in mind that the distance between the two plates in the ion accelerator chamber is much less than the distance from the extractor to the detection plate. That should make this easy... er.. Chapter 15. Problems 15.2, 15.3, 15.5. Note on 15.5 a, it says LOW molar mass.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Chapter 13. Give 5 examples of wetting in polymer chemistry "problems", much like the wetting
problem of fibers in a spunbond. Describe the problem and the solution (or attempts) in about a
paragraph. Examples I can think of include food films, paint, low adhesion backsize, etc. These are all
examples of changing the surface frictional properties.
Chapter 14. Try question 14.4. This is a hard (I thought) problem. Use equation 14.54, and rearrange.
Keep in mind that the distance between the two plates in the ion accelerator chamber is much less than
the distance from the extractor to the detection plate. That should make this easy... er..
Chapter 15. Problems 15.2, 15.3, 15.5. Note on 15.5 a, it says LOW molar mass.
Transcribed Image Text:Chapter 13. Give 5 examples of wetting in polymer chemistry "problems", much like the wetting problem of fibers in a spunbond. Describe the problem and the solution (or attempts) in about a paragraph. Examples I can think of include food films, paint, low adhesion backsize, etc. These are all examples of changing the surface frictional properties. Chapter 14. Try question 14.4. This is a hard (I thought) problem. Use equation 14.54, and rearrange. Keep in mind that the distance between the two plates in the ion accelerator chamber is much less than the distance from the extractor to the detection plate. That should make this easy... er.. Chapter 15. Problems 15.2, 15.3, 15.5. Note on 15.5 a, it says LOW molar mass.
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