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Which of the following correctly distinguishes between an Arrhenius acid and base? Choose 1 answer: (A) An acid produces \( \mathrm{H}^{+} \)in water, while a base produces \( \mathrm{OH}^{-} \). (B) An acid produces \( \mathrm{OH}^{-} \)in water, while a base produces \( \mathrm{H}^{+} \). (C) An acid produces \( \mathrm{H}_{2} \) gas in water, while a base produces \( \mathrm{CO}_{2} \).

Ask by Vaughan French. in the United States
Feb 03,2025

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An acid produces \( \mathrm{H}^{+} \) in water, while a base produces \( \mathrm{OH}^{-} \).

Solución

To distinguish between an Arrhenius acid and base, we can refer to the definitions provided by Svante Arrhenius: - An **Arrhenius acid** is a substance that increases the concentration of \( \mathrm{H}^{+} \) ions (protons) in aqueous solution. - An **Arrhenius base** is a substance that increases the concentration of \( \mathrm{OH}^{-} \) ions (hydroxide ions) in aqueous solution. Now, let's analyze the options: (A) An acid produces \( \mathrm{H}^{+} \) in water, while a base produces \( \mathrm{OH}^{-} \). This statement is correct according to the Arrhenius definitions. (B) An acid produces \( \mathrm{OH}^{-} \) in water, while a base produces \( \mathrm{H}^{+} \). This statement is incorrect; it reverses the definitions. (C) An acid produces \( \mathrm{H}_{2} \) gas in water, while a base produces \( \mathrm{CO}_{2} \). This statement is also incorrect; it does not reflect the definitions of Arrhenius acids and bases. Thus, the correct answer is: **(A) An acid produces \( \mathrm{H}^{+} \) in water, while a base produces \( \mathrm{OH}^{-} \).**

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The Deep Dive

An Arrhenius acid is indeed characterized by its ability to produce \( \mathrm{H}^{+} \) ions when dissolved in water, defining its acidic nature. On the flip side, an Arrhenius base is known for its ability to produce \( \mathrm{OH}^{-} \) ions in water, creating a more alkaline environment. This fundamental model helps differentiate acids from bases in a straightforward manner, making it easier to understand how they interact in aqueous solutions. In practical chemistry, distinguishing between acids and bases is crucial for various applications, from titrations to industrial processes. For instance, when preparing a buffer solution, knowing the behavior of acids and bases ensures that you maintain the desired pH. This basic understanding lays the groundwork for more complex concepts in acids and bases, paving the way for exciting explorations in chemistry!

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