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Stability of Coordination Compounds Video Lecture | Chemistry Class 12 - NEET

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FAQs on Stability of Coordination Compounds Video Lecture - Chemistry Class 12 - NEET

1. What are coordination compounds?
Ans. Coordination compounds are complex molecules that consist of a central metal ion or atom surrounded by ligands. These ligands are usually ions or molecules that donate electron pairs to the metal ion, forming coordinate covalent bonds.
2. How is the stability of coordination compounds determined?
Ans. The stability of coordination compounds is determined by factors such as the nature of the metal ion, the charge on the metal ion, and the nature of the ligands. Generally, coordination compounds with higher charges on the metal ion and ligands with a greater ability to donate electron pairs lead to greater stability.
3. What is the significance of stability in coordination compounds?
Ans. The stability of coordination compounds is significant as it affects their properties and reactivity. More stable coordination compounds tend to have higher melting points, solubility, and chemical inertness. They also exhibit different colors and can be used as catalysts or in various applications such as medicine and agriculture.
4. How can the stability of coordination compounds be enhanced?
Ans. The stability of coordination compounds can be enhanced by selecting ligands with a higher ability to donate electron pairs or by choosing metal ions with higher charges. Additionally, chelation, which involves the formation of multiple bonds between a ligand and a metal ion, can significantly increase the stability of coordination compounds.
5. Can the stability of coordination compounds be affected by external factors?
Ans. Yes, the stability of coordination compounds can be affected by external factors such as temperature, pH, and the presence of other substances. Changes in these factors can alter the equilibrium between the coordination compound and its constituent ions, leading to a change in stability. Additionally, the presence of other ligands or ions can compete for binding sites and affect the stability of the coordination compound.
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