Isomers are molecules with the same elemental composition but a different atomic arrangement. Three isomers with the formula C 4 H 8 are shown in the models below. The enthalpy of combustion (Δ c H °) of each isomer, determined using a calorimeter, is as follows: (a) Draw an energy level diagram relating the energy content of the three isomers to the energy content of the combustion products, CO 2 ( g ) and H 2 O( ℓ ). (b) Use the Δ c H ° data in part (a), along with the enthalpies of formation of CO 2 ( g ) and H 2 O( ℓ ) from Appendix L, to calculate the enthalpy of formation for each of the isomers. (c) Draw an energy level diagram that relates the enthalpies of formation of the three isomers to the energy of the elements in their standard states. (d) What is the enthalpy change for the conversion of cis -2-butene to trans -2-butene?
Isomers are molecules with the same elemental composition but a different atomic arrangement. Three isomers with the formula C 4 H 8 are shown in the models below. The enthalpy of combustion (Δ c H °) of each isomer, determined using a calorimeter, is as follows: (a) Draw an energy level diagram relating the energy content of the three isomers to the energy content of the combustion products, CO 2 ( g ) and H 2 O( ℓ ). (b) Use the Δ c H ° data in part (a), along with the enthalpies of formation of CO 2 ( g ) and H 2 O( ℓ ) from Appendix L, to calculate the enthalpy of formation for each of the isomers. (c) Draw an energy level diagram that relates the enthalpies of formation of the three isomers to the energy of the elements in their standard states. (d) What is the enthalpy change for the conversion of cis -2-butene to trans -2-butene?
Isomers are molecules with the same elemental composition but a different atomic arrangement. Three isomers with the formula C4H8 are shown in the models below. The enthalpy of combustion (ΔcH°) of each isomer, determined using a calorimeter, is as follows:
(a) Draw an energy level diagram relating the energy content of the three isomers to the energy content of the combustion products, CO2(g) and H2O(ℓ).
(b) Use the ΔcH° data in part (a), along with the enthalpies of formation of CO2(g) and H2O(ℓ) from Appendix L, to calculate the enthalpy of formation for each of the isomers.
(c) Draw an energy level diagram that relates the enthalpies of formation of the three isomers to the energy of the elements in their standard states.
(d) What is the enthalpy change for the conversion of cis-2-butene to trans-2-butene?
(a)
Expert Solution
Interpretation Introduction
Interpretation:
The energy level diagram relating the energy content of the three isomers has to be determined
Concept Introduction:
Heat energy required to raise the temperature of 1g of substance by 1K.Energy gained or lost can be calculated using the below equation.
q=C×m×ΔT
Where, q= energy gained or lost for a given mass of substance (m), C =specific heat capacity,ΔT= change in temperature.
The standard molar enthalpy of formation is the enthalpy change ΔfH0 is the enthalpy change for the formation of 1mol a compound directly from its component elements in their standard states. And is given by
ΔrH0ΣnΔfH0(products)-ΣnΔfH0(reactants)
Explanation of Solution
The energy level diagram is given below
Figure 1
(b)
Expert Solution
Interpretation Introduction
Interpretation:
The enthalpy of formation of CO2andH2O has to be calculated.
Concept Introduction:
Heat energy required to raise the temperature of 1g substance by 1K.Energy gained or lost can be calculated using the below equation.
q=C×m×ΔT
Where, q= energy gained or lost for a given mass of substance (m), C =specific heat capacity,ΔT= change in temperature.
The standard molar enthalpy of formation is the enthalpy change ΔfH0 is the enthalpy change for the formation of 1mol of a compound directly from its component elements in their standard states. And is given by
ΔrH0ΣnΔfH0(products)-ΣnΔfH0(reactants)
Explanation of Solution
Given reaction is:
C4H8+6O2→4CO2+4H2O
For cis-2-butene
Using the formula ΔrH0ΣnΔfH0(products)-ΣnΔfH0(reactants)
the enthalpy of formation for each of the isomers found out.
(c)
Expert Solution
Interpretation Introduction
Interpretation:
The energy level diagram based on the enthalpy of formation has to be determined.
Concept Introduction:
Heat energy required to raise the temperature of 1g of substance by 1K. Energy gained or lost can be calculated using the below equation.
q=C×m×ΔT
Where, q= energy gained or lost for a given mass of substance (m), C =specific heat capacity, ΔT= change in temperature.
The standard enthalpy change of combustion of a compound is the enthalpy change which occurs when one gram of the compound is burned completely in oxygen under standard conditions, and with everything in its standard state.
ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
Explanation of Solution
The energy level diagram based on the enthalpy of formation is:
Figure 2
(d)
Expert Solution
Interpretation Introduction
Interpretation:
The enthalpy change for the conversion of cis-2-butene to trans-2-butene has to be calculated.
Concept Introduction:
Heat energy required to raise the temperature of 1g of substance by 1K. Energy gained or lost can be calculated using the below equation.
q=C×m×ΔT
Where, q= energy gained or lost for a given mass of substance (m), C =specific heat capacity, ΔT= change in temperature.
The standard enthalpy change of combustion of a compound is the enthalpy change which occurs when one gram of the compound is burned completely in oxygen under standard conditions, and with everything in its standard state.
Where are the chiral centers in this molecule? Also is this compound meso yes or no?
A mixture of C7H12O2, C9H9OCl, biphenyl and acetone was put together in a gas chromatography tube. Please decide from the GC resutls which correspond to the peak for C7,C9 and biphenyl and explain the reasoning based on GC results. Eliminate unnecessary peaks from Gas Chromatography results.
Is the molecule chiral, meso, or achiral?
CI
.CH3
H₂C
CI
Chapter 5 Solutions
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