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Current Question (ID: 7980)

Question:
The electronic configurations of the elements $\text{A}$, $\text{B}$, and $\text{C}$ are given below. $\text{A} = 1s^2 2s^2 2p^6$ $\text{B} = 1s^2 2s^2 2p^6 3s^2 3p^3$ $\text{C} = 1s^2 2s^2 2p^6 3s^2 3p^5$ The bond between $\text{B}$ and $\text{C}$ will be :
Options:
  • 1. $\text{Ionic.}$
  • 2. $\text{Covalent.}$ (Correct)
  • 3. $\text{Hydrogen.}$
  • 4. $\text{Coordinate.}$
Solution:
$\text{HINT: B and C are non-metal.}\n\n\text{Explanation:}\n\text{Nonmetals can form different types of bonds depending on their partner atoms. Ionic bonds form when a nonmetal and a metal exchange electrons, while covalent bonds form when electrons are shared between two nonmetals.}\n\text{Thus, the bond between B and C will be covalent as both B and C are non-metal atoms. B represents phosphorus and C represents chlorine.}\n\text{So, the stable compound formed is PCl}_3$

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Expected JSON Format:

{
  "question": "The mass of carbon present in 0.5 mole of $\\mathrm{K}_4[\\mathrm{Fe(CN)}_6]$ is:",
  "options": [
    {
      "id": 1,
      "text": "1.8 g"
    },
    {
      "id": 2,
      "text": "18 g"
    },
    {
      "id": 3,
      "text": "3.6 g"
    },
    {
      "id": 4,
      "text": "36 g"
    }
  ],
  "solution": "\\begin{align}\n&\\text{Hint: Mole concept}\\\\\n&1 \\text{ mole of } \\mathrm{K}_4[\\mathrm{Fe(CN)}_6] = 6 \\text{ moles of carbon atom}\\\\\n&0.5 \\text{ mole of } \\mathrm{K}_4[\\mathrm{Fe(CN)}_6] = 6 \\times 0.5 \\text{ mol} = 3 \\text{ mol}\\\\\n&1 \\text{ mol of carbon} = 12 \\text{ g}\\\\\n&3 \\text{ mol carbon} = 12 \\times 3 = 36 \\text{ g}\\\\\n&\\text{Hence, 36 g mass of carbon present in 0.5 mole of } \\mathrm{K}_4[\\mathrm{Fe(CN)}_6].\n\\end{align}",
  "correct_answer": 4
}