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(a) Is an endothermic reaction more likely to be spontaneous at higher temperatures or lower temperatures? Explain.

(b) The change depicted below occurs at constant pressure. Explain your answers to each of the following:

(1) What is the sign of Δ±á?

(2) What is the sign of Δ³§?

(3) What is the sign of Δ³§surr?

(4) How does the sign ofΔ³Òvary with temperature?

Short Answer

Expert verified

(a) At higher temperatures, an endothermic reaction is more likely to be spontaneous.

(b) The signs for Δ±á,Δ³§,Δ³§surrare positive, negative, positive respectively and Δ³Ò will be negative at high temperatures.

Step by step solution

01

Concept Introduction.

A spontaneous reaction is one in which the energy is released suddenly and the reaction occurs quickly. Entropy is a measure of a system's unpredictability or disorder in general. Entropy is a thermodynamic property that describes how a system behaves in terms of temperature, pressure, entropy, and heat capacity. Gibbs free energy, also known as Gibbs function, Gibbs energy, or free enthalpy, is a term used to measure the greatest amount of work done in a thermodynamic system when temperature and pressure remain constant.

02

Endothermic reaction being spontaneous.

(a)

Note that an endothermic reaction is a reaction that absorbs heat. Therefore, the heat is in the reactant side.

heat+reactant⇌product

According to Le Chatelier's principle, when one chemical species is in excess, it will ruin the equilibrium and will proceed to the reaction where it will be consumed to restore the equilibrium. For an endothermic reaction to proceed spontaneously, the heat should be in excess.

Therefore, an endothermic reaction is more likely spontaneous at higher temperatures.

03

Sign of  ΔH, ΔS, ΔSsurr, ΔG.

(b)

(1) In a particular spontaneous reaction, the entropy of the system decreases. That means that the value for the system decreases. This means that Δ±áis a positive number.

(2) In a particular spontaneous reaction, the entropy of the system diminishes. That means that the value of the system decreases. This means that Δ³§sysis a negative number.

(3) It is known that Δ³§univis equal to Δ³§sysplus Δ³§surrand the whole thing here is the spontaneous process. So, Δ³§univshould be a positive number. And from the previous thing, it is known, that as is a negative number.

So, in order to make this sum a positive number, must be a positive number and also a greater magnitude, then .

(4) In a particular spontaneous reaction, the entropy of the system decreases. That means that the value of the system decreases. At high temperatures, Δ³Òwill be negative.

Therefore, the signs are obtained.

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Most popular questions from this chapter

Use Appendix B to determine theKspofCaF2

Propylene (propene;CH3CH = CH2 ) is used to produce polypropylene and many other chemicals. Although most is obtained from the cracking of petroleum, about2% is produced by catalytic dehydrogenation of propane ( CH3CH2CH3):

CH3CH2CH3→Pt/Al2O3CH3CH = CH2+H2

Because this reaction is endothermic, heaters are placed between the reactor vessels to maintain the required temperature.

(a) If the molar entropyS°, , of propylene is267.1 J/molK , find its entropy of formation, Sfo.

(b) Find ∆Gf°of propylene (∆Hf°for propylene= 20.4 kJ/mol).

(c) Calculate ∆Hrxn° and∆Grxn° for the dehydrogenation.

(d) What is the theoretical yield of propylene at 580°C if the initial pressure of propane is 1.00atm?

(e) Would the yield change if the reactor walls were permeable toH2 ? Explain.

(f) At what temperature is the dehydrogenation spontaneous, with all substances in the standard state?

Is each statement true or false? If false, correct it.

(a) All spontaneous reactions occur quickly.

(b) The reverse of a spontaneous reaction is nonspontaneous.

(c) All spontaneous processes release heat.

(d) The boiling of water at 100°Cand 1 atm is spontaneous.

(e) If a process increases the freedom of motion of the particles of a system, the entropy of the system decreases.

(f) The energy of the universe is constant; the entropy of the universe decreases toward a minimum.

(g) All systems disperse their energy spontaneously.

(h) BothΔSsysandrole="math" localid="1663321957929" ΔSsurrequal zero at equilibrium.

Distinguish between the terms spontaneous and nonspontaneous. Can a nonspontaneous process occur? Explain.

In the process of respiration, glucose is oxidized completely. In fermentation, O2is absent and glucose is broken down to ethanol and CO2. Ethanol is oxidized to CO2and H2O.

  1. Balance the following equations for these processes:

Respiration:C6H12O6(s)+O2(g)→CO2(g)+H2O(l)

Fermentation:C6H12O6(s)→C2H5OH(l)+CO2(g)

Ethanol oxidation:C2H5OH(l)+O2(g)→CO2(g)+H2O(l)

  1. Calculate Δ³Òrxnofor respiration of 1.00gglucose.
  2. Calculate Δ³Òrxnofor fermentation of 1.00gglucose.
  3. Calculate Δ³Òrxnofor oxidation of the ethanol from part (c).
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