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galben [10]
4 years ago
5

Mg(OH)2 ⇆ Mg²⁺ + 2 OH⁻

Chemistry
1 answer:
Lady_Fox [76]4 years ago
4 0

Answer:

a) Decreasing the pH

Explanation:

What we need to know to solve this problem is that we have an equilibrium for the dissolution of Mg(OH)₂ and we are bringing changes and need to know which one will increase the solubility of this hydroxide.

From LeChateliers principle we know that after any change brought to the equilibrium, the system will react in such a way as to restore the equilibrium by minimizing the disturbance.

Lets see now how our equilibrium will react for the given changes:

a) Decreasing pH

Decreasing pH effectively means we are adding acid to the equilibrium. This acid will consume part of the hydroxide ion, and the system will then shift to to the production of some hydroxide to restore equilibrium.

Therefore Mg(OH)₂ will become more soluble.

b) Increasing the pH

Increasing the pH will have the opposite effect as in part A, and will shift the equilibrium to the reactant side  precipitating some Mg(OH)₂

c) Adding NH₃

NH₃ is a weak base therefore it  will produce some hydroxide ion governed  by the equilibrium

NH₃ + H₂O ⇆ NH₄⁺ + OH⁻

Therefore the equilibrium will shift in the same manner as in part b), that is precipitating some Mg(OH)₂.

d) Addig Mg(NO₃)₂

Here we will be adding Mg²⁺ to the equilibrium, and the system will react to remove some of the added Mg²⁺ making the Mg(OH)₂ less soluble.

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5 0
3 years ago
How many moles of Al are necessary to form 23.6 g of AlBr₃ from this reaction: 2 Al(s) + 3 Br₂(l) → 2 AlBr₃(s) ?
Gnoma [55]

Answer:

0.088 mole of Al.

Explanation:

First, we shall determine the number of mole in 23.6 g of AlBr₃.

This is illustrated below:

Mass of AlBr₃ = 23.6 g

Molar Mass of AlBr₃ = 27 + 3(80) = 267 g/mol

Mole of AlBr₃ =.?

Mole = mass/Molar mass

Mole of AlBr₃ = 23.6 / 267

Mole of AlBr₃ = 0.088 mol

Next, we shall writing the balanced equation for the reaction.

This is given below:

2Al(s) + 3Br₂(l) → 2AlBr₃(s)

From the balanced equation above,

2 moles of Al reacted with 3 mole of Br₂ to 2 moles AlBr₃.

Finally, we shall determine the number of mole of Al needed for the reaction as follow:

From the balanced equation above,

2 moles of Al reacted to 2 moles AlBr₃.

Therefore, 0.088 mole of Al will also react to produce 0.088 mole of AlBr₃.

4 0
3 years ago
Compute 9.3456+2140.56. Round the answer appropriately.
vichka [17]
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5 0
3 years ago
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Gelneren [198K]

Answer:

If i had to take a stab at it would say C

Explanation:

3 0
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vova2212 [387]

Answer:

Endothermic  

Explanation:

The temperature of the water decreased.

The water lost heat.

The heat must have gone into getting the KNO₃ into solution.

So, the dissolving of KNO₃ in water is endothermic.

8 0
4 years ago
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