Easy MCQ +4 / -1 PYQ · JEE Mains 2024

The metal that shows highest and maximum number of oxidation state is :

  1. A Co
  2. B Mn Correct answer
  3. C Fe
  4. D Ti

Solution

<p>The metal that shows the highest and maximum number of oxidation states among the options given is manganese (Mn), which is option B. Manganese exhibits a wide range of oxidation states from +2 to +7, which is more diverse than the other metals mentioned. To further detail:</p> <ul> <li><strong>Co (Cobalt)</strong> typically exhibits oxidation states of +2 and +3, with +2 being the most common. Although it can theoretically show +1 and +4 in very specific compounds, these are not as stable or as common as the states displayed by manganese.</li> <br/><li><strong>Mn (Manganese)</strong> shows a remarkable series of oxidation states from +2 to +7 in its compounds, making it the element with the highest number of stable oxidation states among the options listed. For example, MnO (in the +2 state), Mn<sub>2</sub>O<sub>3</sub> (in the +3 state), MnO<sub>2</sub> (in the +4 state), Mn<sub>2</sub>O<sub>7</sub> (in the +7 state), and so forth.</li> <br/><li><strong>Fe (Iron)</strong> commonly exhibits +2 and +3 oxidation states, such as in FeSO<sub>4</sub> (in the +2 state) and Fe<sub>2</sub>O<sub>3</sub> (in the +3 state). Though there are compounds with Fe in the +6 oxidation state, like potassium ferrate (K<sub>2</sub>FeO<sub>4</sub>), these are not as common or stable as the lower oxidation states.</li> <br/><li><strong>Ti (Titanium)</strong> shows oxidation states of +2, +3, and +4. Among these, the +4 oxidation state (as in TiO<sub>2</sub>) is the most stable and common. Though it offers a variety of states, it doesn't reach the variety or the maximum oxidation state shown by manganese.</li> </ul> <p>Therefore, the correct answer is <strong>Option B: Mn (Manganese)</strong>, which can show the highest and maximum number of oxidation states among the options provided.</p>

About this question

Subject: Chemistry · Chapter: d and f Block Elements · Topic: Properties of Transition Metals

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