The equilibrium constant (K) of the reaction below is K = 6.0 x 102, with initial concentrations as follows: [H2] = 1.0 x 102 M, [N2] = 4.0 M, and [NH3] = 1.0 x 10 M. N2(g) + 3H2(g) = 2NH3(g) Consider the chemlcal reaction: N2 +3H2ylelds 2NH3. If the concentration of the reactant H2 was increased m 1.0x 102 M to 2.5x 101 M, calculate the reaction quotient (Q) and determine which way the chemical stem would shift by comparing the value of Q to K.

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Chapter1: Chemical Foundations
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Use this information to answer Questions 3, 4, and 5:
The equilibrium constant (K) of the reaction below is K = 6.0 x 102, with initial concentrations as follows:
[H2] = 1.0 x 102 M, [N2] = 4.0 M, and [NH3] = 1.0 x 10 M.
N2(g) + 3H2(g)
2NH3(g)
8. Consider the chemical reaction: N2+3H2ylelds 2NH3. If the concentratlon of the reactant H2 was increased
from 1.0x 102 M to 2.5 x 101 M, calculate the reaction quotlent (Q) and determine whlch way the chemical
system would shift by comparlng the value of Q to K.
B IU
E E T
T
0 Word(s)
4. If the concentration of the reactant H2 was decreased from 1.0x 102 M to 2.7 x 104 M, calculate the reaction
quotlent (Q) and determine which way the chemical system would shift by comparing the value of Q to K.
U
T
0 Word(s)
Transcribed Image Text:Use this information to answer Questions 3, 4, and 5: The equilibrium constant (K) of the reaction below is K = 6.0 x 102, with initial concentrations as follows: [H2] = 1.0 x 102 M, [N2] = 4.0 M, and [NH3] = 1.0 x 10 M. N2(g) + 3H2(g) 2NH3(g) 8. Consider the chemical reaction: N2+3H2ylelds 2NH3. If the concentratlon of the reactant H2 was increased from 1.0x 102 M to 2.5 x 101 M, calculate the reaction quotlent (Q) and determine whlch way the chemical system would shift by comparlng the value of Q to K. B IU E E T T 0 Word(s) 4. If the concentration of the reactant H2 was decreased from 1.0x 102 M to 2.7 x 104 M, calculate the reaction quotlent (Q) and determine which way the chemical system would shift by comparing the value of Q to K. U T 0 Word(s)
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