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To determine whether the statement "The oxides B2O3 and B(OH)3 are acidic in nature" is true or false, we can analyze each oxide separately. ### Step 1: Analyze B2O3 - **B2O3 (Boron Trioxide)**: - B2O3 is known to be an acidic oxide. - It reacts with bases (alkalis) to form borates, which indicates its acidic nature. - For example, when B2O3 reacts with sodium hydroxide (NaOH), it forms sodium borate (Na3BO3). This reaction shows that B2O3 can react with a base, confirming its acidic properties. **Conclusion for Step 1**: B2O3 is an acidic oxide. ### Step 2: Analyze B(OH)3 - **B(OH)3 (Boric Acid)**: - B(OH)3 can be considered a weak acid. - It can donate protons (H+) in solution, which is a characteristic of acids. - When B(OH)3 is dissolved in water, it can accept hydroxide ions (OH-) and release protons (H+), confirming its acidic behavior. **Conclusion for Step 2**: B(OH)3 is a weak acid. ### Final Conclusion: Since both B2O3 and B(OH)3 exhibit acidic properties, we can conclude that the statement "The oxides B2O3 and B(OH)3 are acidic in nature" is **True**. ---

To determine whether the statement "The oxides B2O3 and B(OH)3 are acidic in nature" is true or false, we can analyze each oxide separately. ### Step 1: Analyze B2O3 - **B2O3 (Boron Trioxide)**: - B2O3 is known to be an acidic oxide. - It reacts with bases (alkalis) to form borates, which indicates its acidic nature. - For example, when B2O3 reacts with sodium hydroxide (NaOH), it forms sodium borate (Na3BO3). This reaction shows that B2O3 can react with a base, confirming its acidic properties. ...
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