S Figure 1 pH = 10.35 Mg(OH)₂ (s) Mg2+ (aq) + 2 OH(aq) (A) Distilled water (B) NaNO3(aq) (C) HCl(aq) (D) KOH (aq) Figure 2 A student prepared a saturated aqueous solution of Mg(OH)₂ and measured its pH, as shown in figure 1 above. Then the student added a few drops of an unknown solution to the test tube and observed cloudiness in the solutions as shown in figure 2. On the basis of this information and the equilibrium represented above, which of the following is most likely the identity of the reagent added from the dropper.

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Chapter1: Chemical Foundations
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Figure 1
pH = 10.35
S
Figure 2
Mg(OH)₂ (s) Mg2+ (aq) + 2OH(aq)
Z
(A) Distilled water
(B) NaNO3(aq)
(C) HCl(aq)
(D) KOH (aq)
A student prepared a saturated aqueous solution of Mg(OH)₂ and measured its pH, as shown in
figure 1 above. Then the student added a few drops of an unknown solution to the test tube
and observed cloudiness in the solutions as shown in figure 2. On the basis of this information
and the equilibrium represented above, which of the following is most likely the identity of the
reagent added from the dropper.
Transcribed Image Text:Figure 1 pH = 10.35 S Figure 2 Mg(OH)₂ (s) Mg2+ (aq) + 2OH(aq) Z (A) Distilled water (B) NaNO3(aq) (C) HCl(aq) (D) KOH (aq) A student prepared a saturated aqueous solution of Mg(OH)₂ and measured its pH, as shown in figure 1 above. Then the student added a few drops of an unknown solution to the test tube and observed cloudiness in the solutions as shown in figure 2. On the basis of this information and the equilibrium represented above, which of the following is most likely the identity of the reagent added from the dropper.
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