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B2O3 substitutes nonmetal oxides from several metal salts because
  • a)
    B2O3 has more melting point with less volatility than the substituted non-metal oxide
  • b)
    B2O3 can form solid metal meta borates, by substituting the other non-metal oxide
  • c)
    B2O3 is more stable than the substituted non-metal oxide
  • d)
    B2O3 is stronger acidic oxide than the substituted non-metal oxide
Correct answer is option 'A'. Can you explain this answer?
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B2O3substitutes nonmetal oxides from several metal salts becausea)B2O3...
Less volatile with more melting point (B2O3) acidic oxide can substitute more volatile acidic oxides.
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B2O3substitutes nonmetal oxides from several metal salts becausea)B2O3...
B2O3 is commonly used as a substitute for nonmetal oxides from several metal salts due to its higher melting point and lower volatility compared to the substituted non-metal oxide. Let's break down the reasons behind this choice:

1. Higher Melting Point and Lower Volatility:
- B2O3 has a higher melting point and lower volatility compared to many nonmetal oxides. This means that it can withstand higher temperatures without evaporating or decomposing easily.
- The higher melting point of B2O3 makes it suitable for applications that require high-temperature stability, such as in the production of ceramics, glasses, and refractory materials.
- The lower volatility of B2O3 ensures that it remains in the solid state under normal conditions, making it easier to handle and use in various industrial processes.

2. Formation of Solid Metal Meta Borates:
- B2O3 can react with metal salts to form solid metal meta borates by substituting the other non-metal oxide.
- This reaction occurs when B2O3 reacts with metal oxides, hydroxides, or carbonates. The resulting compounds, known as metal meta borates, have various applications in industries such as ceramics, metallurgy, and catalysis.
- The formation of solid metal meta borates provides stability and enhances the properties of the resulting compounds, making them useful in different industrial processes.

3. Stability:
- B2O3 is more stable than many substituted non-metal oxides. It has a higher resistance to decomposition, oxidation, and other chemical reactions.
- This stability makes B2O3 a reliable choice for applications that require long-term stability and resistance to harsh conditions.
- The stability of B2O3 ensures that it can effectively perform its intended function without undergoing significant changes or degradation over time.

In conclusion, B2O3 is preferred as a substitute for nonmetal oxides from several metal salts due to its higher melting point, lower volatility, ability to form solid metal meta borates, and overall stability. These properties make B2O3 a reliable and versatile compound for various industrial applications.
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B2O3substitutes nonmetal oxides from several metal salts becausea)B2O3...
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B2O3substitutes nonmetal oxides from several metal salts becausea)B2O3has more melting point with less volatility than the substituted non-metal oxideb)B2O3can form solid metal meta borates, by substituting the other non-metal oxidec)B2O3is more stable than the substituted non-metal oxided)B2O3is stronger acidic oxide than the substituted non-metal oxideCorrect answer is option 'A'. Can you explain this answer?
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