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when the following molecular equation is balanced using the smallest po…

Question

when the following molecular equation is balanced using the smallest possible integer coefficients, the values of these coefficients are: diphosphorus pentoxide (s) + water (l) → phosphoric acid (aq)

Explanation:

Step1: Write the unbalanced equation

The un - balanced chemical equation is \(P_{2}O_{5}(s)+H_{2}O(l)\to H_{3}PO_{4}(aq)\)

Step2: Balance the phosphorus atoms

There are 2 phosphorus atoms in \(P_{2}O_{5}\). So, we put a coefficient of 2 in front of \(H_{3}PO_{4}\). The equation becomes \(P_{2}O_{5}(s)+H_{2}O(l)\to2H_{3}PO_{4}(aq)\)

Step3: Balance the oxygen atoms

On the right - hand side, in \(2H_{3}PO_{4}\), the number of oxygen atoms is \(2\times4 = 8\). In \(P_{2}O_{5}\), the number of oxygen atoms is 5. So, the number of oxygen atoms from water should be \(8 - 5=3\).

Step4: Balance the hydrogen atoms

On the right - hand side, in \(2H_{3}PO_{4}\), the number of hydrogen atoms is \(2\times3 = 6\). If we put a coefficient of 3 in front of \(H_{2}O\), the number of hydrogen atoms from water is \(3\times2 = 6\)

The balanced equation is \(P_{2}O_{5}(s)+3H_{2}O(l)\to2H_{3}PO_{4}(aq)\)

Answer:

1, 3, 2