The answer is:-
MgCl2 + K2CO3 --> MgCO3 + 2KCl
The products are potassium chloride and magnesium carbonate
The products would be Copper (II) Carbonate and Potassium Chloride due to a double displacement reaction.
MgCl2 + KCO3 --> 2 KCl + MgCO3
4KOH + 2MgCl2 -> 2Mg(OH)2 + 4KCl
Potassium bromide and Magnesium Acetate
KCl2 + Mg2
potassium chloride
MgCl2(aq) + 2KOH(aq) --> Mg(OH)2(s) + 2KCl(aq)It is the molar ratio in the equation. Every mole of magnesium chloride requires 2 moles of potassium hydroxide. Thus 3 moles would need 6 moles of alkali for complete reaction. We don't have that much, so potassium hydroxide is the limiting reactant and we can only use 2 moles of the magnesium chloride and produce 2 moles of magnesium hydroxide.
potassium hydroxide+hydrochloricacid =potassium chloride + water .
Magnesium Chloride is MgCl2.
Potassium chloride + water
It is made up of: -Sodium -Chloride -Potassium -Magnesium
Magnesium hydroxide, a precipitate, is formed.
Yes - you have an acid and base and the resultant products are a salt (Potassium Chloride) and water
potassium chloride
MgCl2 is the chemical formula of magnesium chloride.
MgCl2(aq) + 2KOH(aq) --> Mg(OH)2(s) + 2KCl(aq)It is the molar ratio in the equation. Every mole of magnesium chloride requires 2 moles of potassium hydroxide. Thus 3 moles would need 6 moles of alkali for complete reaction. We don't have that much, so potassium hydroxide is the limiting reactant and we can only use 2 moles of the magnesium chloride and produce 2 moles of magnesium hydroxide.
potassium hydroxide+hydrochloricacid =potassium chloride + water .
In addition to NaCl, road salt formulations usually contain other chloride salts such as magnesium, calcium, and potassium chloride. Sodium acetate and calcium magnesium acetate may also be added to the mix, as well as some basic salts such as calcium hydroxide to help counter corrosiveness.
Magnesium Chloride is MgCl2.
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You would observe precipitation of magnesium hydroxide.
Potassium chloride + water