18 5.00 mol of ammonia are introduced into a 5.00 L reactor vessel in which it partially dissociates at high temperatures. 2NH3(g) 3H2(g) + N2(g) At equilibrium and a particular temperature, 1.00 mole of ammonia remains. Calculate Ke for the reaction. 01: LH-7 Multiple Choice . Files C Ke-15.3 None of the above Kc=19.3 О KC = 21.3 O KC = 17.3

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5.00 mol of ammonia are introduced into a 5.00 L reactor vessel in which it partially dissociates at high temperatures.
2NH3(g) 3H2(g) + N2(g)
At equilibrium and a particular temperature, 1.00 mole of ammonia remains. Calculate Ke for the reaction.
01: LH-7
Multiple Choice
.
Files
C
Ke-15.3
None of the above
Kc=19.3
О
KC = 21.3
O
KC = 17.3
Transcribed Image Text:18 5.00 mol of ammonia are introduced into a 5.00 L reactor vessel in which it partially dissociates at high temperatures. 2NH3(g) 3H2(g) + N2(g) At equilibrium and a particular temperature, 1.00 mole of ammonia remains. Calculate Ke for the reaction. 01: LH-7 Multiple Choice . Files C Ke-15.3 None of the above Kc=19.3 О KC = 21.3 O KC = 17.3
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