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(a)
Interpretation: The structures of the given compounds are to be drawn.
Concept introduction: Structure of any organic compound is drawn by following the sets of rules devised by IUPAC. Any structure denotes a particular compound. The root word determines the number of carbons while counting the longest carbon chain. Double of triple bond should be given lowest carbon number. Prefixes like di, tri, tetra, etc. signifies presence of more than one substituents.
(b)
Interpretation: The structures of the given compounds are to be drawn.
Concept introduction: Structure of any organic compound is drawn by following the sets of rules devised by IUPAC. Any structure denotes a particular compound. The root word determines the number of carbons while counting the longest carbon chain. Double of triple bond should be given lowest carbon number. Prefixes like di, tri, tetra, etc. signifies presence of more than one substituents.
(c)
Interpretation: The structures of the given compounds are to be drawn.
Concept introduction: Structure of any organic compound is drawn by following the sets of rules devised by IUPAC. Any structure denotes a particular compound. The root word determines the number of carbons while counting the longest carbon chain. Double of triple bond should be given lowest carbon number. Prefixes like di, tri, tetra, etc. signifies presence of more than one substituents.
(d)
Interpretation: The structures of the given compounds are to be drawn.
Concept introduction: Structure of any organic compound is drawn by following the sets of rules devised by IUPAC. Any structure denotes a particular compound. The root word determines the number of carbons while counting the longest carbon chain. Double of triple bond should be given lowest carbon number. Prefixes like di, tri, tetra, etc. signifies presence of more than one substituents.
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Chapter 22 Solutions
Chemistry
- Nonearrow_forwardGiven the standard enthalpies of formation for the following substances, determine the reaction enthalpy for the following reaction. 4A (g) + 2B (g) → 2C (g) + 7D (g) AHrxn =?kJ Substance AH in kJ/mol A (g) - 20.42 B (g) + 32.18 C (g) - 72.51 D (g) - 17.87arrow_forwardDetermine ASran for Zn(s) + 2HCl(aq) = ZnCl2(aq) + H2(aq) given the following information: Standard Entropy Values of Various Substance Substance So (J/mol • K) 60.9 Zn(s) HCl(aq) 56.5 130.58 H2(g) Zn2+(aq) -106.5 55.10 CI (aq)arrow_forward
- 3) Catalytic hydrogenation of the compound below produced the expected product. However, a byproduct with molecular formula C10H12O is also formed in small quantities. What is the by product?arrow_forwardWhat is the ΔHorxn of the reaction? NaOH(aq) + HCl(aq) → H2O(l) + NaCl(aq) ΔHorxn 1= ________ kJ/molarrow_forward= +92kJ ΔΗ = +170kJ Use the following reactions: 2NH3(9) N2(g) + 3H2(g) → 11/N2(g) + 2H2O (1) → NO2(g) + 2H2(g) Determine the DH° of this reaction: NO2(g) + H2(g) → 2(g) → 2H2O(l) + NH3(9) ΔΗarrow_forward
- Determine the entropy change for the reaction SO2(g) + O2(g) following information: Standard Entropy Values of Various Substance Substance SO2(g) 02(g) SO3(g) So (J/mol K) 248.2 205.0 256.8 → SO3(g) given thearrow_forwardIndicate which one of the following reactions most certainly results in a negative AS sys. O1402(g) + 3NH4NO3 (s) + C10 H22(1) → 3N2(g) + 17H2O(g) + 10CO2(g) ○ CO2(aq) = CO2(g) ○ H₂O(g) = H₂O(s) CaCO3(g) = CaO(s) + CO2(g) O CuSO4.5H2O(s) = CuSO4(s) + 5H2O(g)arrow_forwardEstimate the DH°rxn of the reaction below: H H-C-C=C-H H Н A table of bond energy Bond H Bond Energy (kJ/mol) C-H 413 C-O 360 C=O 743 C-C 348 |C = C 612 O-H 463 H-H 436 + H-H -> H H-C. - H | | 1 HHHarrow_forward
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