
What is the chemical equation for $Potassium\,oxide + water \to potassium\,hydroxide$ ?
Answer
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Hint: In order to answer this question, we will write the chemical equation for $Potassium\,oxide + water \to potassium\,hydroxide$ and then we will explain the whole reaction. We will discuss more about the product of the given reaction.
Complete answer: The chemical equation for $Potassium\,oxide + water \to potassium\,hydroxide$ is:
${K_2}O + {H_2}O \to 2KOH$
Potassium oxide adding water produces potassium hydroxide.
Potassium oxide is an ionic compound. The charge of potassium is ${K^ + }$ , whereas the charge of oxygen is ${O^{ - 2}}$ . To balance one oxide ion, we need two potassium ions, resulting in the formula \[{K_2}O\] .
Potassium hydroxide is an ionic compound. The charge of potassium is ${K^ + }$ , while the charge of hydroxide is $O{H^ - }$ . One potassium ion is required to balance one hydroxide ion, resulting in the formula $KOH$ .
\[{K_2}O + {H_2}O \to KOH\]
To balance the equation we place a coefficient of 2 in front of the potassium hydroxide:
${K_2}O + {H_2}O \to 2KOH$
Potassium hydroxide, sometimes known as caustic potash, is an inorganic chemical having the formula $KOH$ . $KOH$ is a prototypical strong base, along with sodium hydroxide \[(NaOH)\] . It has a wide range of industrial and specialty applications, the majority of which take advantage of its caustic nature and acid reactivity.
Note:
Laboratory chemicals, fertilisers, polymers, and phytosanitary products all include this molecule. The ${K_2}$ is a second grader. Alternatively, it has an industrial application that results in the production of another material (use of intermediates). Potassium oxide is employed in the fields of mixture formation, repackaging, and agriculture.
Complete answer: The chemical equation for $Potassium\,oxide + water \to potassium\,hydroxide$ is:
${K_2}O + {H_2}O \to 2KOH$
Potassium oxide adding water produces potassium hydroxide.
Potassium oxide is an ionic compound. The charge of potassium is ${K^ + }$ , whereas the charge of oxygen is ${O^{ - 2}}$ . To balance one oxide ion, we need two potassium ions, resulting in the formula \[{K_2}O\] .
Potassium hydroxide is an ionic compound. The charge of potassium is ${K^ + }$ , while the charge of hydroxide is $O{H^ - }$ . One potassium ion is required to balance one hydroxide ion, resulting in the formula $KOH$ .
\[{K_2}O + {H_2}O \to KOH\]
To balance the equation we place a coefficient of 2 in front of the potassium hydroxide:
${K_2}O + {H_2}O \to 2KOH$
Potassium hydroxide, sometimes known as caustic potash, is an inorganic chemical having the formula $KOH$ . $KOH$ is a prototypical strong base, along with sodium hydroxide \[(NaOH)\] . It has a wide range of industrial and specialty applications, the majority of which take advantage of its caustic nature and acid reactivity.
Note:
Laboratory chemicals, fertilisers, polymers, and phytosanitary products all include this molecule. The ${K_2}$ is a second grader. Alternatively, it has an industrial application that results in the production of another material (use of intermediates). Potassium oxide is employed in the fields of mixture formation, repackaging, and agriculture.
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