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Complete and balance the following molecular equations, and then write the net ionic equation for each: (a) \(\mathrm{HBr}(a q)+\mathrm{Ca}(\mathrm{OH})_{2}(a q) \longrightarrow\) (b) \(\mathrm{Cu}(\mathrm{OH})_{2}(s)+\mathrm{HClO}_{4}(a q) \longrightarrow\) (c) \(\mathrm{Al}(\mathrm{OH})_{3}(s)+\mathrm{HNO}_{3}(a q) \longrightarrow\)

Short Answer

Expert verified
The short answers for each part of the exercise are as follows: (a) The net ionic equation is: \(2H^{+}(aq) + 2OH^{-}(aq) \rightarrow 2H_{2}O(l)\) (b) The net ionic equation is: \(Cu(OH)_{2}(s) + 2H^{+}(aq) \rightarrow Cu^{2+}(aq) + 2H_{2}O(l)\) (c) The net ionic equation is: \(Al(OH)_{3}(s) + 3H^{+}(aq) \rightarrow Al^{3+}(aq) + 3H_{2}O(l)\)

Step by step solution

01

Predict the products

We have an acid-base reaction (double displacement). To predict the products, we swap the cations of the reactants: Ca²⁺ and 2OH⁻ react with 2H⁺ and Br⁻ to form CaBr₂ and H₂O.
02

Balance the molecular equation

The balanced molecular equation is: 2HBr(aq) + Ca(OH)₂(aq) → CaBr₂(aq) + 2H₂O(l)
03

Write the complete ionic equation

Breaking each compound into its individual ions, we get: 2H⁺(aq) + 2Br⁻(aq) + Ca²⁺(aq) + 2OH⁻(aq) → Ca²⁺(aq) + 2Br⁻(aq) + 2H₂O(l)
04

Write the net ionic equation

Cancel the spectator ions (Ca²⁺ and 2Br⁻) and obtain the net ionic equation: 2H⁺(aq) + 2OH⁻(aq) → 2H₂O(l) (b) Cu(OH)₂(s) + HClO₄(aq) →
05

Predict the products

We have an acid-base reaction with Cu²⁺ and 2OH⁻ reacting with H⁺ and ClO₄⁻ to form Cu(ClO₄)₂ and H₂O.
06

Balance the molecular equation

The balanced molecular equation is: Cu(OH)₂(s) + 2HClO₄(aq) → Cu(ClO₄)₂(aq) + 2H₂O(l)
07

Write the complete ionic equation

Breaking each compound into its individual ions, we get: Cu(OH)₂(s) + 2H⁺(aq) + 2ClO₄⁻(aq) → Cu²⁺(aq) + 2ClO₄⁻(aq) + 2H₂O(l)
08

Write the net ionic equation

Cancel the spectator ions (2ClO₄⁻) and obtain the net ionic equation: Cu(OH)₂(s) + 2H⁺(aq) → Cu²⁺(aq) + 2H₂O(l) (c) Al(OH)₃(s) + HNO₃(aq) →
09

Predict the products

We have an acid-base reaction with Al³⁺ and 3OH⁻ reacting with H⁺ and NO₃⁻ to form Al(NO₃)₃ and H₂O.
10

Balance the molecular equation

The balanced molecular equation is: Al(OH)₃(s) + 3HNO₃(aq) → Al(NO₃)₃(aq) + 3H₂O(l)
11

Write the complete ionic equation

Breaking each compound into its individual ions, we get: Al(OH)₃(s) + 3H⁺(aq) + 3NO₃⁻(aq) → Al³⁺(aq) + 3NO₃⁻(aq) + 3H₂O(l)
12

Write the net ionic equation

Cancel the spectator ions (3NO₃⁻) and obtain the net ionic equation: Al(OH)₃(s) + 3H⁺(aq) → Al³⁺(aq) + 3H₂O(l)

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Most popular questions from this chapter

(a) Which will have the highest concentration of potassium ion: \(0.20 \mathrm{M} \mathrm{KCl}, 0.15 \mathrm{M} \mathrm{K}_{2} \mathrm{CrO}_{4}\), or \(0.080 \mathrm{M} \mathrm{K}_{3} \mathrm{PO}_{4} ?\) (b) Which will contain the greater number of moles of potassium ion: \(30.0 \mathrm{~mL}\) of \(0.15 \mathrm{M} \mathrm{K}_{2} \mathrm{Cr} \mathrm{O}_{4}\) or \(25.0 \mathrm{~mL}\) of \(0.080 \mathrm{M} \mathrm{K}_{3} \mathrm{PO}_{4} ?\)

Identify the precipitate (if any) that forms when the following solutions are mixed, and write a balanced equation for each reaction. (a) \(\mathrm{Ni}\left(\mathrm{NO}_{3}\right)_{2}\) and \(\mathrm{NaOH}\), (b) \(\mathrm{NaOH}\) and \(\mathrm{K}_{2} \mathrm{SO}_{4}\), (c) \(\mathrm{Na}_{2} \mathrm{~S}\) and \(\mathrm{Cu}\left(\mathrm{CH}_{3} \mathrm{COO}\right)_{2}\).

Explain how a redox reaction involves electrons in the same way that an acid- base reaction involves protons. [Sections \(4.3\) and \(4.4]\)

What does it mean to say that ions are hydrated when an ionic substance dissolves in water?

A sample of solid \(\mathrm{Ca}(\mathrm{OH})_{2}\) is stirred in water at \(30^{\circ} \mathrm{C}\) until the solution contains as much dissolved \(\mathrm{Ca}(\mathrm{OH})_{2}\) as it can hold. A \(100-\mathrm{mL}\) sample of this solution is withdrawn and titrated with \(5.00 \times 10^{-2} \mathrm{M} \mathrm{HBr}\). It requires \(48.8 \mathrm{~mL}\) of the acid solution for neutralization. What is the molarity of the \(\mathrm{Ca}(\mathrm{OH})_{2}\) solution? What is the solubility of \(\mathrm{Ca}(\mathrm{OH})_{2}\) in water, at \(30^{\circ} \mathrm{C}\), in grams of \(\mathrm{Ca}(\mathrm{OH})_{2}\) per \(100 \mathrm{~mL}\) of solution?

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