1. Finding Equilibrium Concentrations from Initial Concentrations and the Equilibrium Constant. Consider the reaction: N,0.(g) =2 NO2(g) Kc = 0.36 (at 100 °C) A reaction mixture at 100 °C initially contains [NO2] = 0.100 M. Find the equilibrium concentrations of NO2 and N20, at this temperature. (Hint Q>Keq, the rxn with proceed to the left) %3D

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Can I please have the work 2? Thanks!
mar X
E WK16 SF x
ECopy of X
A Classwo x
EAlyssa D X
E How do x
Da IXL-Fin X
om.google.com/u/0/c/MjQ5MTk5Mjl4NDM5/a/MZMOMZM4MDM4MZU0/details
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Advanced Equilibrium Calculations ("x" is not small)
1. Finding Equilibrium Concentrations from Initial Concentrations and the Equilibrium Constant.
Consider the reaction:
N,O.(g) = 2 NO2(g)
Kc = 0.36 (at 100 °C)
A reaction mixture at 100 °C initially contains (NO2] = 0.100 M. Find the equilibrium
concentrations of NOz and N20, at this temperature. (Hint Q>Keq, the rxn with proceed to the left)
Page 1 I 1
98%
17
Transcribed Image Text:mar X E WK16 SF x ECopy of X A Classwo x EAlyssa D X E How do x Da IXL-Fin X om.google.com/u/0/c/MjQ5MTk5Mjl4NDM5/a/MZMOMZM4MDM4MZU0/details e (x is not small) Equations.docx.pdf Open with Honors Chemistry Distance Learning Advanced Equilibrium Calculations ("x" is not small) 1. Finding Equilibrium Concentrations from Initial Concentrations and the Equilibrium Constant. Consider the reaction: N,O.(g) = 2 NO2(g) Kc = 0.36 (at 100 °C) A reaction mixture at 100 °C initially contains (NO2] = 0.100 M. Find the equilibrium concentrations of NOz and N20, at this temperature. (Hint Q>Keq, the rxn with proceed to the left) Page 1 I 1 98% 17
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