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Q.Which of the following is an electrical conductor at room temperature? (A) Sn (B) Mica (C) Si (D) C

CBSECBSE Class XII Board 2025MCQ· 1mImportance★★★★★
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The key idea is to classify each material by its electrical conductivity at room temperature. Sn (tin) is a metal and a good conductor, while mica is an insulator and silicon is a semiconductor. The correct option is (A).

Concept and Intuition

Electrical conductivity depends on how freely electrons can move through a material. At room temperature:

  • Metals (like tin) have a "sea" of delocalized electrons that flow easily — they are excellent conductors.
  • Insulators (like mica) have electrons tightly bound to atoms — they barely conduct.
  • Semiconductors (like silicon) have a small band gap; at room temperature, some electrons gain enough energy to jump to the conduction band, making them moderate conductors, but not as good as metals.

The question asks for an electrical conductor — meaning a material that readily allows current flow. Among the options, only one is a metal.

Step-by-Step Solution

  1. Identify the nature of each substance

    • Sn (tin): A metal in Group 14 of the periodic table. It has metallic bonding with free electrons.
    • Mica: A silicate mineral — a classic electrical insulator used in capacitors and high-voltage applications.
    • Si (silicon): A metalloid, a semiconductor. Its conductivity is low at room temperature (though it increases with doping or heating).
    • C (carbon): Can exist as graphite (a conductor) or diamond (an insulator). The problem doesn't specify the allotrope, but in standard exam contexts, "C" alone usually refers to the element in its common form — often graphite is considered, but here the intended answer is clearly tin.
  2. Compare conductivities at room temperature

    • Tin has a resistivity of about 1.1×10−7 Ω⋅m1.1 \times 10^{-7} \, \Omega \cdot \text{m} — typical of a metal.
    • Mica has resistivity exceeding 1012 Ω⋅m10^{12} \, \Omega \cdot \text{m} — an insulator.
    • Silicon has resistivity around 2.3×103 Ω⋅m2.3 \times 10^{3} \, \Omega \cdot \text{m} — a semiconductor, not a good conductor at room temperature. …

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