ime, a sample of iron is converted to rust according to the following reacti (s)+30, g)2Fe O(s) SH =- 1618. the temperature condition at which the reaction above will be spontaneou

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Wem 50-53.
ven enough time, a sample of iron is converted to rust according to the following reaction:
IFe(s)+ 30, g)+2Fe.O(s)
A =- 1618.1 kJ / mol
50. Predict the temperature condition at which the reaction above will be spontaneous.
a the reaction will be spontaneous at low temperatures.
b. the reaction will be spontaneous at high temperatures.
c. the reaction will be spontaneous at low temperatures and high pressure.
d. the reaction will be spontaneous at low temperatures and low pressure.
51. if the AS of the given reaction is -549.62 J/mol K. what is the AG at 25 7
a. 1844.6 kJ/mol
b. 1484.6 kJ/mol
c. 1454.6 mol/kJ
d. 1484.9 kJ/mol
52. Will the reaction proceed spontaneously at 298 K?
L No, since the AG of the reaction is negative.
b. Yes, since the AH of the reaction is negative.
c. Yes, since the AG of the reaction is negative.
d. Yes, since the AG of the reaction is positive.
Transcribed Image Text:Wem 50-53. ven enough time, a sample of iron is converted to rust according to the following reaction: IFe(s)+ 30, g)+2Fe.O(s) A =- 1618.1 kJ / mol 50. Predict the temperature condition at which the reaction above will be spontaneous. a the reaction will be spontaneous at low temperatures. b. the reaction will be spontaneous at high temperatures. c. the reaction will be spontaneous at low temperatures and high pressure. d. the reaction will be spontaneous at low temperatures and low pressure. 51. if the AS of the given reaction is -549.62 J/mol K. what is the AG at 25 7 a. 1844.6 kJ/mol b. 1484.6 kJ/mol c. 1454.6 mol/kJ d. 1484.9 kJ/mol 52. Will the reaction proceed spontaneously at 298 K? L No, since the AG of the reaction is negative. b. Yes, since the AH of the reaction is negative. c. Yes, since the AG of the reaction is negative. d. Yes, since the AG of the reaction is positive.
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