
Concept explainers
Interpretation:
The facts related to the resonance stabilization of benzene, heat of hydrogenation and fuel value of benzene and acetylene are to be determined; also the experiment to prove the existence of resonance in cyclooctatetraene is to be determined.
Concept Introduction:
The enthalpy change of the combustion reaction is calculated by the difference of sum of the enthalpy change of products and reactants.
(a)
To determine:
The comparison of heat of hydrogenation of benzene and acetylene and the greater fuel value out of

Explanation of Solution
The heat of hydrogenation of acetylene is
The heat of hydrogenation of benzene is
The fuel value of acetylene is higher than benzene which is consistent with the stability of benzene.
Step 1:
To determine:
The heat of hydrogenation and fuel value of

Answer to Problem 1DE
Solution:
The heat of hydrogenation of acetylene is
Explanation of Solution
The balanced chemical equation for the combustion of acetylene is,
The enthalpy change of the given reaction is calculated by the formula,
Substitute the values of
The fuel value of acetylene is calculated by dividing its standard enthalpy change by the mass.
Step 2:
To determine:
The heat of hydrogenation and fuel value of

Answer to Problem 1DE
Solution:
The heat of hydrogenation of benzene is
Explanation of Solution
The balanced chemical equation for the combustion of benzene is,
The enthalpy change of the given reaction is calculated by the formula,
Substitute the values of
The fuel value of benzene is calculated by dividing its standard enthalpy change by the mass.
Since, the fuel value of benzene is less than that of acetylene. Therefore, benzene ring is especially stable and not gets easily oxidized. Thus, the calculations of heat of hydrogenation and fuel value are consistent with the extra stabilization of benzene.
The heat of hydrogenation of acetylene is
The heat of hydrogenation of benzene is
The fuel value of acetylene is higher than benzene which is consistent with the stability of benzene.
(b)
To determine:
The heat of hydrogenation and fuel value of toluene.

Answer to Problem 1DE
Solution:
The heat of hydrogenation of toluene is
Explanation of Solution
The balanced chemical equation for the combustion of benzene is,
The enthalpy change of the given reaction is calculated by the formula,
Substitute the values of
The fuel value of benzene is calculated by dividing its standard enthalpy change by the mass.
The heat of hydrogenation of toluene is
(c)
To determine:
The explanation of stabilization of benzene by using the given values of heat of hydrogenation.

Answer to Problem 1DE
Solution:
The heat of hydrogenation for benzene is more than cyclohexane because benzene is more stable and it requires more energy to break its bonds.
Explanation of Solution
Given
The heat of hydrogenation of benzene to make cyclohexane is
The heat of hydrogenation of cyclohexene to make cyclohexane is
The heat of hydrogenation is the energy required to break the carbon-hydrogen bonds in the molecule. More is the heat of hydrogenation; more is the stability of the molecule. Since, the heat of hydrogenation of benzene is more than that of the cyclohexene. Therefore, the benzene is more stable than that of the cyclohexene.
The heat of hydrogenation for benzene is more than cyclohexane because benzene is more stable and it requires more energy to break its bonds.
(d)
To determine:
The explanation of resonance and stability of benzene on the basis of bond lengths and bond angles.

Answer to Problem 1DE
Solution:
The bond lengths and bond angle in benzene are all equal which confirms the existence of phenomenon of resonance in the molecule.
Explanation of Solution
The pi electrons present in the benzene ring is delocalized among all the carbon atoms of the ring. Due to this the bond lengths and bond angles of all carbon-carbon bonds are equal which proves the delocalized bonding in the ring. Therefore, the bond lengths and bond angles are sufficient to decide the existence of resonance and stability in the structure.
The bond lengths and bond angle in benzene are all equal which confirms the existence of phenomenon of resonance in the molecule.
(e)
To determine:
The experiment to prove the existence of resonance in cyclo octatetraene.

Answer to Problem 1DE
Solution:
The NMR spectrum of cyclo octatetraene proves that this molecule does not exhibit the phenomenon of resonance.
Explanation of Solution
The NMR spectrum of the given sample is the measure of number of hydrogen nuclei in the molecule. The number of peaks present in the NMR spectrum decides the types of nucleus present in the structure. The given structure of cyclooctatetraene contains two types of protons present in the structure having two different bond lengths. Therefore, the pheneomenon of resonance does not exhibit in this structure.
The NMR spectrum of cyclooctatetraene proves that this molecule does not exhibit the phenomenon of resonance.
Want to see more full solutions like this?
Chapter 8 Solutions
Test Prep Series for AP Chemistry for Chemistry: The Central Science 14th ed AP
- Please answer the questions in the photos and please revise any wrong answers. Thank youarrow_forward(Please be sure that 7 carbons are available in the structure )Based on the 1H NMR, 13C NMR, DEPT 135 NMR and DEPT 90 NMR, provide a reasoning step and arrive at the final structure of an unknown organic compound containing 7 carbons. Dept 135 shows peak to be positive at 128.62 and 13.63 Dept 135 shows peak to be negative at 130.28, 64.32, 30.62 and 19.10.arrow_forward-lease help me answer the questions in the photo.arrow_forward
- For the reaction below, the concentrations at equilibrium are [SO₂] = 0.50 M, [0] = 0.45 M, and [SO3] = 1.7 M. What is the value of the equilibrium constant, K? 2SO2(g) + O2(g) 2SO3(g) Report your answer using two significant figures. Provide your answer below:arrow_forwardI need help with this question. Step by step solution, please!arrow_forwardZn(OH)2(s) Zn(OH)+ Ksp = 3 X 10-16 B₁ = 1 x 104 Zn(OH)2(aq) B₂ = 2 x 1010 Zn(OH)3 ẞ3-8 x 1013 Zn(OH) B4-3 x 1015arrow_forward
- Help me understand this by showing step by step solution.arrow_forwardscratch paper, and the integrated rate table provided in class. our scratch work for this test. Content attribution 3/40 FEEDBACK QUESTION 3 - 4 POINTS Complete the equation that relates the rate of consumption of H+ and the rate of formation of Br2 for the given reaction. 5Br (aq) + BrO3 (aq) + 6H (aq) →3Br2(aq) + 3H2O(l) • Your answers should be whole numbers or fractions without any decimal places. Provide your answer below: Search 尚 5 fn 40 * 00 99+ 2 9 144 a [arrow_forward(a) Write down the structure of EDTA molecule and show the complex structure with Pb2+ . (b) When do you need to perform back titration? (c) Ni2+ can be analyzed by a back titration using standard Zn2+ at pH 5.5 with xylenol orange indicator. A solution containing 25.00 mL of Ni2+ in dilute HCl is treated with 25.00 mL of 0.05283 M Na2EDTA. The solution is neutralized with NaOH, and the pH is adjusted to 5.5 with acetate buffer. The solution turns yellow when a few drops of indicator are added. Titration with 0.02299 M Zn2+ requires 17.61 mL to reach the red end point. What is the molarity of Ni2+ in the unknown?arrow_forward
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistryChemistryISBN:9781259911156Author:Raymond Chang Dr., Jason Overby ProfessorPublisher:McGraw-Hill EducationPrinciples of Instrumental AnalysisChemistryISBN:9781305577213Author:Douglas A. Skoog, F. James Holler, Stanley R. CrouchPublisher:Cengage Learning
- Organic ChemistryChemistryISBN:9780078021558Author:Janice Gorzynski Smith Dr.Publisher:McGraw-Hill EducationChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningElementary Principles of Chemical Processes, Bind...ChemistryISBN:9781118431221Author:Richard M. Felder, Ronald W. Rousseau, Lisa G. BullardPublisher:WILEY





