By using the given data, high heating value (HHV) vs molar mass of hydrocarbon graph has to be drawn and also the HHV for propane has to be calculated by using that graph.
By using the given data, high heating value (HHV) vs molar mass of hydrocarbon graph has to be drawn and also the HHV for propane has to be calculated by using that graph.
By using the given data, high heating value (HHV) vs molar mass of hydrocarbon graph has to be drawn and also the HHV for propane has to be calculated by using that graph.
(a)
Expert Solution
Explanation of Solution
Figure 1
Calculate the HHV for propane by using the trend line equation,
Molar mass for propane is 44.097g/mol.high heating value (HHV)=30376(44.097g/mol)-0.088=21768BTU/lb.
(b)
Interpretation Introduction
Interpretation:
By using the given data, High heating value (HHV) - low heating value (LHV) vs molar mass of hydrocarbon graph has to be drawn and also the |HHV - LHV| for propane has to be calculated by using that graph.
(b)
Expert Solution
Explanation of Solution
Figure 2
Calculate the |HHV - LHV| for propane by using the trend line equation,
Molar mass for propane is 44.097g/mol.|HHV - LHV|(BTU/lb)=5159.3(44.097g/mol)-0.287=1740BTU/lb.
(c)
Interpretation Introduction
Interpretation:
By using the given and obtained data in part (a) and part (b), enthalpies of reaction for the given reaction has to be calculated.
-21768BTUlbC3H8(1lb453.59g)(44.097gC3H81molC3H8)(1.055kJ1.000BTU)=-2233kJ/molC3H8HHVbasedthermochemicalequation is given byC3H8(g)+5O2(g)→3CO2(g)+4H2O(l);ΔHrxn=-2233kJ.
The second equation corresponds to propane’s LHV. Using HHV-LHV difference the value of LHV was calculated.
-20028BTUlbC3H8(1lb453.59g)(44.097gC3H81molC3H8)(1.055kJ1.000BTU)=-2054kJ/molC3H8LHVbasedthermochemicalequation is given byC3H8(g)+5O2(g)→3CO2(g)+4H2O(l);ΔHrxn=-2054kJ.
The estimated enthalpies are -2233kJand-2054kJ, respectively.
(d)
Interpretation Introduction
Interpretation:
By using the given data and results obtained in part (c), the amount of heat energy released when 1700kgofC3H8(g) combustion has to be calculated.
(d)
Expert Solution
Answer to Problem 6.161QP
The amount of heat energy released from the combustion of 1700kgofC3H8(g) is 7.9×107kJ.
Using the graphs could you help me explain the answers. I assumed that both graphs are proportional to the inverse of time, I think. Could you please help me.
Synthesis of Dibenzalacetone
[References]
Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below.
Question 1
1 pt
Question 2
1 pt
Question 3
1 pt
H
Question 4
1 pt
Question 5
1 pt
Question 6
1 pt
Question 7
1pt
Question 8
1 pt
Progress:
7/8 items
Que Feb 24 at
You do not have to consider stereochemistry.
. Draw the enolate ion in its carbanion form.
• Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner.
⚫ Separate multiple reactants using the + sign from the drop-down menu.
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4
Shown below is the mechanism presented for the formation of biasplatin in reference 1 from the Background and Experiment document. The amounts used of each reactant are shown. Either draw or describe a better alternative to this mechanism. (Note that the first step represents two steps combined and the proton loss is not even shown; fixing these is not the desired improvement.) (Hints: The first step is correct, the second step is not; and the amount of the anhydride is in large excess to serve a purpose.)
Chapter 6 Solutions
Student Solutions Manual for Ebbing/Gammon's General Chemistry, 11th
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