3) Matching. Reaction 2: Cobalt Chloride The color the COCI4+ 6H₂0 - Co(H₂0)6+²+4Cl in the solution demonstrates that the equilibrium in this reaction is to , causing a greater concentration of Co(H₂O)6+² ions. -2 Adding hydrochloric acid to the solution causes the equilibrium to shift to the CoCl2 because there is an increase in ions. This gives the solution a color.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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ts/199084620/work
Credit) | Lab: Reversible Reactions
W
3) Matching.
Reaction 2: Cobalt Chloride
The color
the
COCI4+ 6H₂O Co(H₂0)6+²+4Cl
4) Choose the best answer.
in the solution demonstrates that the equilibrium in this reaction is to
✓, causing a greater concentration of Co(H₂0)6+2 ions.
Target due: Last
Adding hydrochloric acid to the solution causes the equilibrium to shift to the CoCl2 because there is an
increase in
▾ions. This gives the solution a
color.
Why does adding water cause a color change?
O Water is a product of our original reaction, and when we added it, the concentration of the cobalt complex ion on the
left side of the equation increased.
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Transcribed Image Text:ts/199084620/work Credit) | Lab: Reversible Reactions W 3) Matching. Reaction 2: Cobalt Chloride The color the COCI4+ 6H₂O Co(H₂0)6+²+4Cl 4) Choose the best answer. in the solution demonstrates that the equilibrium in this reaction is to ✓, causing a greater concentration of Co(H₂0)6+2 ions. Target due: Last Adding hydrochloric acid to the solution causes the equilibrium to shift to the CoCl2 because there is an increase in ▾ions. This gives the solution a color. Why does adding water cause a color change? O Water is a product of our original reaction, and when we added it, the concentration of the cobalt complex ion on the left side of the equation increased. Previous Sign out Next =
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