Reactivity 1.2.4—An application of Hess’s law uses enthalpy of formation data or enthalpy of combustion data to calculate the enthalpy change of a reaction. Calculate enthalpy changes of a reaction using ΔHf⦵ data or ΔHc⦵ data: ΔH⦵ = Σ ΔHf⦵products − Σ ΔHf⦵reactants ΔH⦵ = Σ ΔHc, ⦵reactants − Σ ΔHc. ⦵products
Description
[N/A]Directly related questions
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19M.1A.HL.TZ1.17:
Which equation represents the standard enthalpy of atomization of bromine, Br2?
A. Br2 (l) → Br (g)
B. Br2 (l) → 2Br (g)
C. Br2 (l) → 2Br (l)
D. Br2 (l) → Br (l)
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19M.1A.HL.TZ1.17:
Which equation represents the standard enthalpy of atomization of bromine, Br2?
A. Br2 (l) → Br (g)
B. Br2 (l) → 2Br (g)
C. Br2 (l) → 2Br (l)
D. Br2 (l) → Br (l)
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19M.1A.HL.TZ1.17:
Which equation represents the standard enthalpy of atomization of bromine, Br2?
A. Br2 (l) → Br (g)
B. Br2 (l) → 2Br (g)
C. Br2 (l) → 2Br (l)
D. Br2 (l) → Br (l)
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19M.1A.HL.TZ1.17:
Which equation represents the standard enthalpy of atomization of bromine, Br2?
A. Br2 (l) → Br (g)
B. Br2 (l) → 2Br (g)
C. Br2 (l) → 2Br (l)
D. Br2 (l) → Br (l)
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20N.1A.SL.TZ0.13:
Which equation shows the enthalpy of formation, , of ethanol?
A.
B.
C.
D.
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20N.1A.SL.TZ0.13:
Which equation shows the enthalpy of formation, , of ethanol?
A.
B.
C.
D.
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20N.1A.SL.TZ0.13:
Which equation shows the enthalpy of formation, , of ethanol?
A.
B.
C.
D.
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20N.1A.SL.TZ0.13:
Which equation shows the enthalpy of formation, , of ethanol?
A.
B.
C.
D.
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21M.2.HL.TZ2.1b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21M.2.HL.TZ2.1b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21M.2.HL.TZ2.b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21M.2.HL.TZ2.1b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21M.2.HL.TZ2.1b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21M.2.HL.TZ2.b(ii):
Calculate the change in entropy, ΔS, in J K−1, for the decomposition of calcium carbonate.
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21N.1A.HL.TZ0.15:
Which equation represents the standard enthalpy of formation of lithium oxide?
A. 4Li (s) + O2 (g) → 2Li2O (s)B. 2Li (s) + O2 (g) → Li2O (s)
C. Li (s) + O2 (g) → Li2O (s)
D. Li (g) + O2 (g) → Li2O (g)
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21N.1A.HL.TZ0.15:
Which equation represents the standard enthalpy of formation of lithium oxide?
A. 4Li (s) + O2 (g) → 2Li2O (s)B. 2Li (s) + O2 (g) → Li2O (s)
C. Li (s) + O2 (g) → Li2O (s)
D. Li (g) + O2 (g) → Li2O (g)
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21N.1A.HL.TZ0.15:
Which equation represents the standard enthalpy of formation of lithium oxide?
A. 4Li (s) + O2 (g) → 2Li2O (s)B. 2Li (s) + O2 (g) → Li2O (s)
C. Li (s) + O2 (g) → Li2O (s)
D. Li (g) + O2 (g) → Li2O (g)
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21N.1A.HL.TZ0.15:
Which equation represents the standard enthalpy of formation of lithium oxide?
A. 4Li (s) + O2 (g) → 2Li2O (s)B. 2Li (s) + O2 (g) → Li2O (s)
C. Li (s) + O2 (g) → Li2O (s)
D. Li (g) + O2 (g) → Li2O (g)
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.3c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
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21N.2.HL.TZ0.c(i):
Calculate the standard enthalpy change (ΔH⦵) for the forward reaction in kJ mol−1.
ΔH⦵f PCl3 (g) = −306.4 kJ mol−1
ΔH⦵f PCl5 (g) = −398.9 kJ mol−1
- 22M.1A.HL.TZ1.14: What is the enthalpy change of the following reaction? CH2CHCH2CH3 + HBr → CH3CHBrCH2CH3 A. ...
- 22M.1A.HL.TZ1.14: What is the enthalpy change of the following reaction? CH2CHCH2CH3 + HBr → CH3CHBrCH2CH3 A. ...
- 22M.1A.HL.TZ1.14: What is the enthalpy change of the following reaction? CH2CHCH2CH3 + HBr → CH3CHBrCH2CH3 A. ...
- 22M.1A.HL.TZ1.14: What is the enthalpy change of the following reaction? CH2CHCH2CH3 + HBr → CH3CHBrCH2CH3 A. ...