Metallic character:
Each and every transition element is metal. These are rigid in nature, and a very good conductor of heat and electricity. All such metals are ductile, malleable, and made alloys with another metals. Such elements take place in three kind for instance face-centered cubic (i.e., fcc), hexagonal close-packed (i.e., hcp) and body-centered cubic (i.e., bcc), structures.
The transition elements exhibit covalent and also metallic bonding both in the midst of their atoms.
Explanation:
Ionization energies of the transition elements are not high. The outermost shell in such atoms has numerous vacant, partly filled orbital. Such characteristics make such elements metallic in character. Rigidity of the metals, recommends the existence of the covalent bonding in such metals. The existence of the unfilled d-orbitals favors covalent bonding. Metallic bonding in such metals is pointed out by conducting nature of the metals. Hence, it emerges that there exists covalent and metallic bonding in the transition elements.
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