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[" Nickel "(Z=28)" combines with a unine...

[" Nickel "(Z=28)" combines with a uninegative monodentate ligand to form a diamagnetic complex "[NiL_(4)]^(2)" ."],[" The hybridisation involved and the number of unpaired electrons present in the complex are respectively "],[[" (1) "dsp^(2)" ,zero "," (2) "sp^(3)" ,zero "," (3) "dsp^(2)" ,one "," (4) "sp^(3)" ,two "],[," [JEE (Main-Online) "," [ "" ( "" ( "," ( "]]

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Nickel (Z=28) combines with a uninegative monodenatate ligands to form a diamagnetic complex [NiL_(4)]^(2-) . The hybridisation involved and the number of unpaired electrons present in the complex are respectively:

Nickel (Z=28) combines with a uninegative monodenatate ligands to form a diamagnetic complex [NiL_(4)]^(2-) . The hybridisation involved and the number of unpaired electrons present in the complex are respectively:

Nickel (Z=28) combines with a uninegative monodentate ligand X^(-) to form a paramagnetic complex [NiX_4]^(2-) . The number of unpaired electron/s in the nickel and geometry of this complex ion are respectively _________.

Nickel (Z=28) combines with a uninegative monodentate ligand X^(-) to form a paramagnetic complex [NiX_4]^(2-) . The number of unpaired electron(s) in the nickel and geometry of this complex ion are, respectively:

Nickel (Z = 28) combines with a uninegative monodentate ligand X^(-) to form a paramagnetic complex [NiX_4]^(2-) . The number of unpaired electrons in the nickel and geometry of this complex ion are, respectively

Nickel (Z=28) combines with a uninegative monodentate ligand X^(-) to form a paramagnetic complex [NiX_4]^(2-) . The number of unpaired electron(s) in the nickel and geometry of this complex ion are, respectively:

Nickel (Z = 28) combines with a uninegative monodentate ligand X to form a paramagnetic complex [NiX_4]^(2-) . The number of unpaired electron(s) in the nickel and geometry of this complex ion are, respectively