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Q.Read the following passage carefully and answer the questions given below - The d-block of periodic table contains the elements of group 3 to group 12. These are also called transition elements as they exhibit the properties in between the properties of s and p block elements. The electronic configuration of their last two outermost orbitals is (n−1)d1−10 ns1−2(n-1)d^{1-10}\,ns^{1-2}. There is a very less difference in energies of (n-1)d and ns orbitals. So in few elements (Cr, Cu etc.), the electrons from ns orbital enter into (n-1)d orbital. That's why the total number of unpaired electrons in different orbitals becomes maximum and the orbitals acquire more stability.

(a) Which are transition elements? Why these are called transition elements? [1]
(b) Write down the electronic configuration of Chromium (Cr) and Copper (Cu). [2]
(c) Why d-block orbitals acquire more stability? [1]
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2024Subjective· 4mImportance★★★★★
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Transition elements are the d-block elements bridging s- and p-block properties; Cr and Cu show exceptional configurations for extra stability from half-filled/fully-filled d-subshells.

  1. Transition elements are the d-block elements (groups 3 to 12 of the periodic table) that have partially filled d-orbitals either in the ground state or in at least one of their commonly occurring oxidation states, with general outer electronic configuration (n−1)d1−10 ns1−2(n-1)d^{1-10}\,ns^{1-2}. They are called "transition" elements because their physical and chemical properties are intermediate (transitional) between those of the highly reactive, electropositive s-block metals and the comparatively less reactive, more covalent p-block elements — they represent a bridge/transition connecting the chemistry of the two blocks.
  2. Electronic configurations: Chromium, Cr (Z = 24): the expected configuration by the Aufbau principle would be [Ar] 3d4 4s2[Ar]\,3d^4\,4s^2, but the actual configuration is [Ar] 3d5 4s1[Ar]\,3d^5\,4s^1 — one 4s electron shifts into the 3d subshell to attain a stable, symmetrical half-filled (d5d^5) configuration. Copper, Cu (Z = 29): the expected configuration would be [Ar] 3d9 4s2[Ar]\,3d^9\,4s^2, but the actual configuration is [Ar] 3d10 4s1[Ar]\,3d^{10}\,4s^1 — one 4s electron shifts into 3d to attain a stable, completely-filled (d10d^{10}) configuration. …

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