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Post-Laboratory Questions Use the spaces provided for the answers and additional paper if necessary. 1. Although the composition of peanuts is complex, one of the primary components is peanut oil, which has the chemical formula $C_{57}H_{104}O_6$. Balance the following equation for the combustion of pea- nut oil. $C_{57}H_{104}O_6(l) + O_2(g) \rightarrow CO_2(g) + H_2O(g)$ 2. Now that you have completed the experiment, think back on the experimental setup, and suggest two changes you could make to improve the accuracy of your determination. Briefly explain the basis for each change. (a) (b) 3. In this experiment, it is impossible to transfer all of the energy released by the combustion reaction to the water in the calorimeter. Some energy will be lost to the surroundings, no matter how careful we are. Assume for a moment, however, that your experimental setup was perfect, that the peanut half burned completely, and that all of the energy released by the combustion reaction was transferred to the water in the can. Given these conditions, should your determination of the number of Calories per gram of peanut be identical to the number printed on the peanut container label? Briefly explain.

          Post-Laboratory Questions
Use the spaces provided for the answers and additional paper if necessary.
1. Although the composition of peanuts is complex, one of the primary components is peanut oil,
which has the chemical formula $C_{57}H_{104}O_6$. Balance the following equation for the combustion of pea-
nut oil.
$C_{57}H_{104}O_6(l) + O_2(g) \rightarrow CO_2(g) + H_2O(g)$
2. Now that you have completed the experiment, think back on the experimental setup, and suggest
two changes you could make to improve the accuracy of your determination. Briefly explain the basis
for each change.
(a)
(b)
3. In this experiment, it is impossible to transfer all of the energy released by the combustion reaction
to the water in the calorimeter. Some energy will be lost to the surroundings, no matter how careful we
are. Assume for a moment, however, that your experimental setup was perfect, that the peanut half
burned completely, and that all of the energy released by the combustion reaction was transferred to
the water in the can. Given these conditions, should your determination of the number of Calories per
gram of peanut be identical to the number printed on the peanut container label? Briefly explain.
        
Show more…
Post-Laboratory Questions
Use the spaces provided for the answers and additional paper if necessary.
1. Although the composition of peanuts is complex, one of the primary components is peanut oil,
which has the chemical formula C57H104O6. Balance the following equation for the combustion of pea-
nut oil.
C57H104O6(l) + O2(g) → CO2(g) + H2O(g)
2. Now that you have completed the experiment, think back on the experimental setup, and suggest
two changes you could make to improve the accuracy of your determination. Briefly explain the basis
for each change.
(a)
(b)
3. In this experiment, it is impossible to transfer all of the energy released by the combustion reaction
to the water in the calorimeter. Some energy will be lost to the surroundings, no matter how careful we
are. Assume for a moment, however, that your experimental setup was perfect, that the peanut half
burned completely, and that all of the energy released by the combustion reaction was transferred to
the water in the can. Given these conditions, should your determination of the number of Calories per
gram of peanut be identical to the number printed on the peanut container label? Briefly explain.

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Chemistry: Structure and Properties
Chemistry: Structure and Properties
Nivaldo Tro 2nd Edition
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Please help. How do I answer all three of these questions? Post-Laboratory Questions Not all. CsHOC+Og-CO+HOg Two changes you could make to improve the accuracy of your determination. Briefly explain the basis for each change. (a) (a) 3. In this experiment, it is impossible to transfer all of the energy released by the combustion reaction to the water in the calorimeter. Some energy will be lost to the surroundings, no matter how careful we are. Assume for a moment, however, that your experimental setup was perfect and that the peanut heated half the water in the can. Given these conditions, should your determination of the number of Calories per gram of peanut be identical to the number printed on the peanut container label? Briefly explain.
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In this experiment, it is impossible to transfer all of the energy released by the combustion reaction to the water in the calorimeter. Assume for a moment that no matter how careful we are, some energy will be lost to the surroundings. However, assuming that the combustion reaction was burned completely and that all of your experimental setup was perfect, should the energy released by the combustion reaction be transferred to the water in the can? Given these conditions, should your determination of the number of calories be identical to the number printed on the peanut container label? Briefly explain.

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Not all of the energy released from the peanut was absorbed by the calorimeter. (The recovery is usually less than 100%). Where did the rest of the energy go? There could be energy that was stored. Is the burning of peanuts exothermic or endothermic? How do you know? It is exothermic because heat is being released. All other things being equal, if you had used twice the mass of peanuts, what would you expect to happen to the calculated value of q? It would increase by a factor of 2. All other things being equal, if you had used twice the mass of water, what would you expect to happen to the observed value of ΔT? It would not increase as fast due to the larger volume. Challenge Question: When you compare the calorimetry result to the caloric content reported on the food label, is it possible to obtain greater than 100% energy recovery? Explain:

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name-ch-111-introduction-to-inorganic-and-organic-chemistry-exp-428-calorie-content-of-a-peanut-instructions-print-out-these-instructions-and-the-report-sheet-read-the-backgroundintroduction-24224

Name: CH 111 – Introduction to Inorganic and Organic Chemistry Exp. 428 – Calorie Content of a Peanut INSTRUCTIONS 1. Print out these instructions and the report sheet. 2. Read the Background/Introduction section of the lab manual and watch the intro video. 3. Watch the videos attached under the instructions. 4. Do the calculations. No graph is needed. 5. Submit both the report sheet and any supplementary questions as either a .doc or .pdf file and submit them as an attached file under the lab assignment. No labs will be accepted by e-mail. Report Sheet Data, Results and Calculations Trial 1 Trial 2 Initial mass of peanut, g 0.902 0.596 Mass of peanut residue, g 0.114 0.028 Mass of peanut burned Final water temperature, °C 40 33.5 Initial water temperature, °C 21.3 21.1 Change in water temperature Mass of water in calorimeter, kg 0.200 0.200 Total amount of energy released, cal Amount of energy released per g of peanut burned Average amount of energy released per grams of peanut burned Accepted amount of energy released Percent difference Supplementary Questions 1. What effect would using a tin can instead of an aluminum can have on the results? 2. What three places is the heat from the peanut lost to?

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00:01 So if we see food companies, so if we see food companies, they are earlier used to do this, used to do this procedure, used to do this procedure for finding out calories...
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