Use a number 2 pencil
SrBr2 + (NH4)2CO3 → SrCO3 + 2NH4Br Strontium Bromide + Ammonium Carbonate → Strontium Carbonate + Ammonium Bromide
You wouldn't expect strontium to gain electrons in a chemical change.
The products of this reaction are strontium chloride, carbon dioxide and water.
Because strontium sulfate is much less soluble in water than strontium chloride, sodium chloride, or sodium sulfate, this reaction is: Na2SO4 (aq) + SrCl2 (aq) => 2 NaCl (aq) + SrSO4 (s).
2Sr(NO3)2 → 2SrO + 4NO2+ O2
5.53 g
0.0932 L
0.0932 L
Sodium hydroxide reacts with carbon dioxide to form sodium carbonate and water. This reaction is a type of neutralization reaction, where the strong base (sodium hydroxide) neutralizes the acidic carbon dioxide to form a salt (sodium carbonate) and water.
The reaction between an acid and hydroxide is called neutralization reaction.
Strontium hydroxide is typically sourced from the reaction between strontium oxide and water, producing strontium hydroxide. It can also be produced as a byproduct in the refining of strontium-containing ores or as a commercial product from chemical suppliers.
Neutralization
This is an acid/alkali reaction, that produces a salt and water. Word equation ; - Hydrobromic acid and strontium hydroxide produces strontium bromide and water. Here is the BALANCED reaction eq'n 2HBr + Sr(OH)2 = SrBr2 + 2H2O
Strontium belongs to alkaline earth metalswhich form the stable carbonates so when carbon dioxide is added to aqueous solution of strontium hydroxide white ppts. of strontium carbonate are formed. Sr(OH)2+ CO2 = SrCO3 + H2O
Sulfuric acid reacts with lithium hydroxide in a neutralization reaction to form lithium sulfate and water.
When an acid is neutralized by a hydroxide, water and a salt are formed. This reaction is known as a neutralization reaction.
The exchange reaction between sulfuric acid (H2SO4) and strontium hydroxide (Sr(OH)2) results in the formation of strontium sulfate (SrSO4) and water (H2O). This reaction can be represented by the chemical equation: H2SO4 + Sr(OH)2 → SrSO4 + 2H2O. In this reaction, the hydrogen ions (H+) from sulfuric acid combine with the hydroxide ions (OH-) from strontium hydroxide to form water, while the strontium ions (Sr2+) from strontium hydroxide combine with the sulfate ions (SO4 2-) from sulfuric acid to form strontium sulfate.