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The number of geometric isomers that can...

The number of geometric isomers that can exist for square planner complex ion `[Pt(CI)(PY)(NH_(3))(NH_(2)OH)]^(+)` is (Py = pyridine) :

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The number of geometric isomers that can exist for square planar [Pt(C1)(py)(NH_(3)) (NH_(2)OH)^(+)] is (py = pyridine).

The number of geometric isomers that can exist for square planar [Pt(C1)(py)(NH_(3)) (NH_(2)OH)^(+)] is (py = pyridine).

The number of geometric isomers that can exist for square planar [Pt(C1)(py)(NH_(3)) (NH_(2)OH)^(+)] is (py = pyridine).

The number of geometric isomers that can exist for square planar [Pt(Cl)(py) (NH_(3))(NH_(2))OH]^(+) is (py = pyridine) :

The no.of geometrical isomers that can exist for the square planar complex [Pt(NH_(3))Cl(NH_(2)OH)(py)]^(+) is

Number of geometric isomers that can exist for square planar [Pt(Cl)(py)(NH_(3))(NH_(2)OH)]^(+) is -