(a)
Interpretation: The structure of alternating
Concept introduction: The copolymer is composed of two or more different monomers. The simpler units which combine to form
(b)
Interpretation: The structure of alternating copolymer formed from the given pair of monomers is to be drawn.
Concept introduction: The copolymer is composed of two or more different monomers. The simpler units which combine to form polymers are known as monomers. The process by which respective monomers combine to form polymers is known as polymerization.
(c)
Interpretation: The structure of alternating copolymer formed from the given pair of monomers is to be drawn.
Concept introduction: The copolymer is composed of two or more different monomers. The simpler units which combine to form polymers are known as monomers. The process by which respective monomers combine to form polymers is known as polymerization.
(d)
Interpretation: The structure of alternating copolymer formed from the given pair of monomers is to be drawn.
Concept introduction: The copolymer is composed of two or more different monomers. The simpler units which combine to form polymers are known as monomers. The process by which respective monomers combine to form polymers is known as polymerization.
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ORGANIC CHEMISTRY
- Draw all reasonable resonance structures for the following cation. Then draw the resonance hybrid. Provide steps and explanationarrow_forwardHow are the molecules or ions in each pair related? Classify them as resonance structures, isomers, or neither.arrow_forwardWhich of the given resonance structures (A, B, or C) contributes most to the resonance hybrid? Which contributes least? Provide steps and explanationarrow_forward
- Substance X is known to exist at 1 atm in the solid, liquid, or vapor phase, depending on the temperature. Additionally, the values of these other properties of X have been determined: melting point enthalpy of fusion 90. °C 8.00 kJ/mol boiling point 130. °C enthalpy of vaporization 44.00 kJ/mol density 2.80 g/cm³ (solid) 36. J.K mol (solid) 2.50 g/mL (liquid) heat capacity 32. J.Kmol (liquid) 48. J.Kmol (vapor) You may also assume X behaves as an ideal gas in the vapor phase. Ex Suppose a small sample of X at 50 °C is put into an evacuated flask and heated at a constant rate until 15.0 kJ/mol of heat has been added to the sample. Graph the temperature of the sample that would be observed during this experiment. o0o 150- 140 130- 120- 110- 100- G Ar ?arrow_forwardMechanism. Provide the mechanism for the reaction below. You must include all arrows, intermediates, and formal charges. If drawing a Sigma complex, draw all major resonance forms. The ChemDraw template of this document is available on Carmen. Br FeBr3 Brarrow_forwardCheck the box under each compound that exists as a pair of mirror-image twins. If none of them do, check the none of the above box under the table. CH3 OH CH3 CH2 -CH-CH3 CH3 OH OH CH-CH2-CH- -CH3 CH3 CH3 OH OH CH3 C -CH2- C. -CH3 CH3- -CH2- -CH-CH2-OH OH CH3 none of the above كarrow_forward
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