The monomer that is used to produce the polymer contains 1 nitrogen atom. The mass composition of the monomer is 67.90 % C, 5.70% H and 26.40% N. The possible geometric structure of the monomer needs to be drawn with labbled bond lengths and bond angles. Concept introduction: A polymer is a long chain molecule made of large number of monomer units. The monomer is repeating units of a polymer that are linked to each other to produce a molecule of polymer. These monomer units are linked to each other either through the formation of peptide linkage or glycosidic linkage or by removal of any moiety such as a water molecule. Polyvinyl chloride, Bakelite and polystyrene are some of the example of polymers . The example showing the formation of polystyrene from styrene momomer.
The monomer that is used to produce the polymer contains 1 nitrogen atom. The mass composition of the monomer is 67.90 % C, 5.70% H and 26.40% N. The possible geometric structure of the monomer needs to be drawn with labbled bond lengths and bond angles. Concept introduction: A polymer is a long chain molecule made of large number of monomer units. The monomer is repeating units of a polymer that are linked to each other to produce a molecule of polymer. These monomer units are linked to each other either through the formation of peptide linkage or glycosidic linkage or by removal of any moiety such as a water molecule. Polyvinyl chloride, Bakelite and polystyrene are some of the example of polymers . The example showing the formation of polystyrene from styrene momomer.
Solution Summary: The author explains the composition of the monomer, which is 67.90 % C, 5.70% H, and 26.40% N. Polyvinyl chloride, Bakelite and polystyrene are
Definition Definition Chemical process in which one or more monomers combine to produce a very large chain-like molecule called a polymer. The functional groups present on the monomers and their steric effects are responsible for polymerization through a sequence of reactions that vary in complexity. There exists a stable covalent chemical bond between monomers that sets apart polymerization from other processes.
Chapter 11, Problem 62IAE
Interpretation Introduction
Interpretation:
The monomer that is used to produce the polymer contains 1 nitrogen atom. The mass composition of the monomer is 67.90 % C, 5.70% H and 26.40% N. The possible geometric structure of the monomer needs to be drawn with labbled bond lengths and bond angles.
Concept introduction:
A polymer is a long chain molecule made of large number of monomer units. The monomer is repeating units of a polymer that are linked to each other to produce a molecule of polymer.
These monomer units are linked to each other either through the formation of peptide linkage or glycosidic linkage or by removal of any moiety such as a water molecule.
Polyvinyl chloride, Bakelite and polystyrene are some of the example of polymers.
The example showing the formation of polystyrene from styrene momomer.
(EXM 2, PRBLM 3) Here is this problem, can you explain it to me and show how its done. Thank you I need to see the work for like prbl solving.
can someone draw out the reaction mechanism for this reaction showing all bonds, intermediates and side products
Comment on the general features of the 1H-NMR spectrum of isoamyl ester provided below
What would be the best choices for the missing reagents 1 and 3 in this synthesis?
1. PPh3
3
2. n-BuLi
• Draw the missing reagents in the drawing area below. You can draw them in any arrangement you like.
• Do not draw the missing reagent 2. If you draw 1 correctly, we'll know what it is.
• Note: if one of your reagents needs to contain a halogen, use bromine.
Click and drag to start drawing a structure.
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Quantum Molecular Orbital Theory (PChem Lecture: LCAO and gerade ungerade orbitals); Author: Prof Melko;https://www.youtube.com/watch?v=l59CGEstSGU;License: Standard YouTube License, CC-BY