Suppose a 250. mL flask is filled with 1.6 mol of CH, 1.8 mol of H,0 and 0.70 mol of CO. This reaction becomes possible: CH,(2) +H,0(g) -co(g) +3H,(g) Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the equilibrium molarity of each compound after the reaction has come to equilibrium. Use x to stand for the unknown change in the molarity of CO. You can leave out the M symbol for molarity. CH, H,0 CO H, initial change equilibrium

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Suppose a 250. mL flask is filled with 1.6 mol of CH, 1.8 mol of H,O and 0.70 mol of CO. This reaction becomes possible:
() +H,0(g) C0(g) +3H,(g)
Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the
equilibrium molarity of each compound after the reaction has come to equilibrium.
Use x to stand for the unknown change in the molarity
CO. You can leave out the M symbol for molarity.
CH,
H,0
CO
H,
initial
change
equilibrium
Explanation
Check
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口ロ X
Transcribed Image Text:Suppose a 250. mL flask is filled with 1.6 mol of CH, 1.8 mol of H,O and 0.70 mol of CO. This reaction becomes possible: () +H,0(g) C0(g) +3H,(g) Complete the table below, so that it lists the initial molarity of each compound, the change in molarity of each compound due to the reaction, and the equilibrium molarity of each compound after the reaction has come to equilibrium. Use x to stand for the unknown change in the molarity CO. You can leave out the M symbol for molarity. CH, H,0 CO H, initial change equilibrium Explanation Check © 2021 McGraw-Hill Education. All Rights Reserved. Terms of Use| Privacy I Accessibility 口ロ X
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