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Question

Match List I with List II and select the correct answer using the code given below the lists:
 

List I
(Locality)
List II
(Deposit)
A. Singrauli1. Lead-zinc
B. Ingaldhal2. Iron
C. Dalli-Rajhara3. Copper
D. Sargipalli4. Coal


Code:

A  B  C  D

The correct answer is

4  3  2  1

Matching Indian Localities with Mineral Deposits

This question requires matching the geographical locations listed in List I with the primary mineral deposits found there, as given in List II. We need to determine the correct pair for each locality to select the right code.

Analyzing List I and List II

Let's examine each locality and its corresponding deposit:

  • A. Singrauli: This region is widely known for its significant coal reserves.
  • B. Ingaldhal: Located in Karnataka, Ingaldhal is recognized for its copper deposits.
  • C. Dalli-Rajhara: This area in Chhattisgarh is a major source of iron ore.
  • D. Sargipalli: Situated in Odisha, Sargipalli is famous for its lead-zinc deposits.

Correct Matching and Code Generation

Based on the analysis, the correct matches are:

  • Singrauli (A) corresponds to Coal (4).
  • Ingaldhal (B) corresponds to Copper (3).
  • Dalli-Rajhara (C) corresponds to Iron (2).
  • Sargipalli (D) corresponds to Lead-zinc (1).

Therefore, the sequence for A, B, C, and D should be 4, 3, 2, 1.

Final Code Selection

The code that represents the correct matching (A-4, B-3, C-2, D-1) is:

4 3  2  1

This corresponds to the third option presented in the question choices.

List I (Locality) List II (Deposit)
A. Singrauli 4. Coal
B. Ingaldhal 3. Copper
C. Dalli-Rajhara 2. Iron
D. Sargipalli 1. Lead-zinc

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Important Questions from Miscellaneous

  1. Which one of the following statements regarding hydrogen atom and other one electron species is correct?
  2. The correct order of penetrating ability of atomic orbitals is :
  3. The correct electronic configuration of Platinum is :
  4. The element with the highest enthalpy of atomization in the first transition series is :
  5. An element forms an ion in the +IV oxidation state with electronic configuration : $4d^4 \ 5d^{10}$. Which group and period of the Modern Periodic Table does the element belong to?
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