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(a)
Interpretation:
The “start” (first three repeating units) of the structural formula for the
Concept Introduction:
Polymer is a very large molecule that is formed by repetitive bonding together of many smaller molecules. The small repeating units are known as monomer.
Addition polymer is the one in which the monomers simply add together with no other products formed apart from the polymer. The repeating unit in addition polymer often exceeds 100,000 and sometimes can exceed even a million.
If the monomer contain only one double bond, then it will take part in polymerization that results in polymer without a double bond.
(b)
Interpretation:
The “start” (first three repeating units) of the structural formula for the addition polymer that is made from vinyl chloride has to be drawn.
Concept Introduction:
Polymer is a very large molecule that is formed by repetitive bonding together of many smaller molecules. The small repeating units are known as monomer. Polymerization is the process by which polymer is prepared.
Addition polymer is the one in which the monomers simply add together with no other products formed apart from the polymer. The repeating unit in addition polymer often exceeds 100,000 and sometimes can exceed even a million.
If the monomer contain only one double bond, then it will take part in polymerization that results in polymer without a double bond.
(c)
Interpretation:
The “start” (first three repeating units) of the structural formula for the addition polymer that is made from 1,2-dichloroethene has to be drawn.
Concept Introduction:
Polymer is a very large molecule that is formed by repetitive bonding together of many smaller molecules. The small repeating units are known as monomer. Polymerization is the process by which polymer is prepared.
Addition polymer is the one in which the monomers simply add together with no other products formed apart from the polymer. The repeating unit in addition polymer often exceeds 100,000 and sometimes can exceed even a million.
If the monomer contain only one double bond, then it will take part in polymerization that results in polymer without a double bond.
(d)
Interpretation:
The “start” (first three repeating units) of the structural formula for the addition polymer that is made from 1-chloroethene has to be drawn.
Concept Introduction:
Polymer is a very large molecule that is formed by repetitive bonding together of many smaller molecules. The small repeating units are known as monomer. Polymerization is the process by which polymer is prepared.
Addition polymer is the one in which the monomers simply add together with no other products formed apart from the polymer. The repeating unit in addition polymer often exceeds 100,000 and sometimes can exceed even a million.
If the monomer contain only one double bond, then it will take part in polymerization that results in polymer without a double bond.
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Chapter 13 Solutions
General, Organic, and Biological Chemistry
- CH3 CH H3C CH3 H OH H3C- -OCH2CH3 H3C H -OCH3 For each of the above compounds, do the following: 1. List the wave numbers of all the IR bands in the 1350-4000 cm-1 region. For each one, state what bond or group it represents. 2. Label equivalent sets of protons with lower-case letters. Then, for each 1H NMR signal, give the 8 value, the type of splitting (singlet, doublet etc.), and the number protons it represents. of letter δ value splitting # of protons 3. Redraw the compound and label equivalent sets of carbons with lower-case letters. Then for each set of carbons give the 5 value and # of carbons it represents. letter δ value # of carbonsarrow_forwardDraw the correct ionic form(s) of arginine at the pKa and PI in your titration curve. Use your titration curve to help you determine which form(s) to draw out.arrow_forwardPlease correct answer and don't use hand ratingarrow_forward
- Nonearrow_forwardNonearrow_forwardCarbohydrates- Draw out the Hawthorne structure for a sugar from the list given in class. Make sure to write out all atoms except for carbons within the ring. Make sure that groups off the carbons in the ring are in the correct orientation above or below the plane. Make sure that bonds are in the correct orientation. Include the full name of the sugar. You can draw out your curve within the text box or upload a drawing below.arrow_forward
- How many milliliters of 97.5(±0.5) wt% H2SO4 with a density of 1.84(±0.01) g/mL will you need to prepare 2.000 L of 0.110 M H2SO4? If the uncertainty in delivering H2SO4 is ±0.01 mL, calculate the absolute uncertainty in the molarity (0.110 M). Assume there is negligible uncertainty in the formula mass of H2SO4 and in the final volume (2.000 L) and assume random error.arrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forwardWhat should be use to complete the reaction? CN CNarrow_forward
- Don't used hand raiting and don't used Ai solutionarrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forward* How many milliliters of 97.5(±0.5) wt% H2SO4 with a density of 1.84(±0.01) g/mL will you need to prepare 2.000 L of 0.110 M H2SO4? * If the uncertainty in delivering H2SO4 is ±0.01 mL, calculate the absolute uncertainty in the molarity (0.110 M). Assume there is negligible uncertainty in the formula mass of NaOH and in the final volume (2.000 L) and assume random error.arrow_forward
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