Cyclohexane, C6H12, undergoes a molecular rearrangement in the presence of AlCl3 to form methylcyclopentane, CH3C5H9, according to the equation: C6H12 → CH3C5H9 If Kc = 0.143 at 25°C for this reaction, find the equilibrium concentrations of C6H12 and CH3C5H9 if the initial concentrations are 0.200 M and 0.050 M, respectively. Cyclohexane, C6H12, undergoes a molecular rearrangement in the presence of AlCl3 to form methylcyclopentane, CH3C5H9, according to the equation: C6H12 → CH3C5H9 If Kc = 0.143 at 25°C for this reaction, find the equilibrium concentrations of C6H12 and CH3C5H9 if the initial concentrations are 0.200 M and 0.050 M, respectively.
[C6H12] = 0.019 M, [CH3C5H9] = 0.019 M [
C6H12] = 0.181 M, [CH3C5H9] = 0.069 M
[C6H12] = 0.219 M, [CH3C5H9] = 0.031 M
[C6H12] = 0.224 M, [CH3C5H9] = 0.026 M
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Cyclohexane, C6H12, undergoes a molecular rearrangement in the presence of AlCl3 to form methylcyclopentane, CH3C5H9, according...
Question 1 (5 points) Cyclohexane, C6H12, undergoes a molecular rearrangement in the presence of a catalyst to form methylcyclopentane, CH3C5H9, according to the equation: C6H12 - CH3C5H9 If Kc = 0.143 at 25°C for this reaction, find the equilibrium concentrations of C6H12 and CH3C5H9 if the initial concentrations are 0.200 M and 0.075 M, respectively. [C6H12] = 0.241 M, [CH3C5H9] = 0.034 M (C6H12] = 0.082 M, [CH3C5H9] = 0.062 M [C6H12] = 0.159 M, [CH3C5H9] = 0.116 M [C6H12]...
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