Chemistry: An Introduction to General, Organic, and Biological Chemistry (12th Edition)

Published by Prentice Hall
ISBN 10: 0321908449
ISBN 13: 978-0-32190-844-5

Chapter 10 - Section 10.6 - Reactions of Acids and Bases - Questions and Problems - Page 348: 10.44c

Answer

$H_2SO_4(aq) + Ca(OH)_2(s) \longrightarrow 2H_2O(l) + CaSO_4(aq)$

Work Step by Step

1. Identify the type of Acid-Base reaction: $Ca(OH)_2$ has the $OH^-$ ion, and it is reacting with an acid ($H_2SO_4$). Therefore, this is a reaction between an acid and an hydroxide. $Acid + Hydroxide \longrightarrow H_2O(l) + Salt$ 2. Find the identity of the salt. The $H_2SO_4$ will donate its $H^+$ ions (since it is an acid). The "$SO_4^{2-}$" will remain in the solution. The calcium hydroxide ($Ca(OH)_2)$ will donate its $OH^-$ ions, leaving the calcium ion ($Ca^{2+}$) alone. Therefore, the produced salt is: $CaSO_4$. 3. Follow the pattern: $H_2SO_4(aq) + Ca(OH)_2(s) \longrightarrow H_2O(l) + CaSO_4(aq)$ ** Notice, the equation isn't balanced, there is a total of 4 hydrogens on the reactants side, and only 2 on the products side. To fix that, we shall put a 2 as the coefficient of $H_2O$: $H_2SO_4(aq) + Ca(OH)_2(s) \longrightarrow 2H_2O(l) + CaSO_4(aq)$ Now, the equation is balanced.
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