03. Hybridisation
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
COORDINATION COMPOUNDS

274137 The type of hybridisation and magnetic property of the complex $\left[\mathrm{MnCl}_{6}\right]^{3-}$, respectively, are

1 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
2 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274138 The hybridizations of N-orbitals in $\mathrm{NO}_{3}^{-}, \mathrm{NO}_{2}^{-}$and $\mathrm{NH}_{4}^{+}$respectively are

1 $\mathrm{sp}^{2}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
2 $\mathrm{sp}, \mathrm{sp}^{3}, \mathrm{sp}^{2}$
3 $\mathrm{sp}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
4 $\mathrm{sp}^{2}, \mathrm{sp}, \mathrm{sp}^{3}$
COORDINATION COMPOUNDS

274139 Match the following ions with the corresponding hybridization of their central atoms?
| Ions | | Hybridization | |
| :--- | :--- | :--- | :--- |
| (i) | $\mathrm{NO}_3^{-}$ | (a) | $\mathrm{sp}^3$ |
| (ii) | $\mathrm{NH}_2^{-}$ | (b) | $\mathrm{sp}$ |
| (iii) | $\mathrm{SCN}^{-}$ | (c) | $\mathrm{sp}^3 \mathrm{~d}$ |
| (iv) | $\mathrm{ICl}_3$ | (d) | $\mathrm{sp}^2$ |

1 (i-d), (ii - a), (iii-b), (iv - c)
2 $(\mathrm{i}-\mathrm{c}),(\mathrm{ii}-\mathrm{b}),(\mathrm{iii}-\mathrm{a}),(\mathrm{iv}-\mathrm{d})$
3 $(\mathrm{i}-\mathrm{a}),(\mathrm{ii}-\mathrm{d}),(\mathrm{iii}-\mathrm{c}),(\mathrm{iv}-\mathrm{b})$
4 $(\mathrm{i}-\mathrm{b}),(\mathrm{ii}-\mathrm{c}),(\mathrm{iii}-\mathrm{d}),(\mathrm{iv}-\mathrm{a})$
COORDINATION COMPOUNDS

274140 Match the following based on valence bond theory?
| Hybridi- zation | Geometry | Complex structure |
| :--- | :--- | :--- |
| $(\mathrm{A}) \mathrm{sp}^3$ | (i) Square planar | (p) $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ |
| $(\mathrm{B}) \mathrm{d}^2 \mathrm{sp}^3$ | (ii) Tetrahedral | (q) $\left[\mathrm{ZnCl}_4\right]^{2-}$ |
| (C) dsp ${ }^2$ | (iii) Octahedral | (r) $\left[\mathrm{Ni}\left(\mathrm{NH}_3\right)_4\right]^{2+}$ |
| | | (s) $\left[\mathrm{Ag}(\mathrm{CN})_2\right]^{-}$ |

1 (A-ii-q), (B-iii-p), (C-i-r)
2 (A-ii-q), (B-iii-r), (C-i-s)
3 (A-i-q), (B-iii-p), (C-ii-r)
4 (A-ii-r), (B-iii-s), (C-i-q)
COORDINATION COMPOUNDS

274137 The type of hybridisation and magnetic property of the complex $\left[\mathrm{MnCl}_{6}\right]^{3-}$, respectively, are

1 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
2 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274138 The hybridizations of N-orbitals in $\mathrm{NO}_{3}^{-}, \mathrm{NO}_{2}^{-}$and $\mathrm{NH}_{4}^{+}$respectively are

1 $\mathrm{sp}^{2}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
2 $\mathrm{sp}, \mathrm{sp}^{3}, \mathrm{sp}^{2}$
3 $\mathrm{sp}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
4 $\mathrm{sp}^{2}, \mathrm{sp}, \mathrm{sp}^{3}$
COORDINATION COMPOUNDS

274139 Match the following ions with the corresponding hybridization of their central atoms?
| Ions | | Hybridization | |
| :--- | :--- | :--- | :--- |
| (i) | $\mathrm{NO}_3^{-}$ | (a) | $\mathrm{sp}^3$ |
| (ii) | $\mathrm{NH}_2^{-}$ | (b) | $\mathrm{sp}$ |
| (iii) | $\mathrm{SCN}^{-}$ | (c) | $\mathrm{sp}^3 \mathrm{~d}$ |
| (iv) | $\mathrm{ICl}_3$ | (d) | $\mathrm{sp}^2$ |

1 (i-d), (ii - a), (iii-b), (iv - c)
2 $(\mathrm{i}-\mathrm{c}),(\mathrm{ii}-\mathrm{b}),(\mathrm{iii}-\mathrm{a}),(\mathrm{iv}-\mathrm{d})$
3 $(\mathrm{i}-\mathrm{a}),(\mathrm{ii}-\mathrm{d}),(\mathrm{iii}-\mathrm{c}),(\mathrm{iv}-\mathrm{b})$
4 $(\mathrm{i}-\mathrm{b}),(\mathrm{ii}-\mathrm{c}),(\mathrm{iii}-\mathrm{d}),(\mathrm{iv}-\mathrm{a})$
COORDINATION COMPOUNDS

274140 Match the following based on valence bond theory?
| Hybridi- zation | Geometry | Complex structure |
| :--- | :--- | :--- |
| $(\mathrm{A}) \mathrm{sp}^3$ | (i) Square planar | (p) $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ |
| $(\mathrm{B}) \mathrm{d}^2 \mathrm{sp}^3$ | (ii) Tetrahedral | (q) $\left[\mathrm{ZnCl}_4\right]^{2-}$ |
| (C) dsp ${ }^2$ | (iii) Octahedral | (r) $\left[\mathrm{Ni}\left(\mathrm{NH}_3\right)_4\right]^{2+}$ |
| | | (s) $\left[\mathrm{Ag}(\mathrm{CN})_2\right]^{-}$ |

1 (A-ii-q), (B-iii-p), (C-i-r)
2 (A-ii-q), (B-iii-r), (C-i-s)
3 (A-i-q), (B-iii-p), (C-ii-r)
4 (A-ii-r), (B-iii-s), (C-i-q)
COORDINATION COMPOUNDS

274137 The type of hybridisation and magnetic property of the complex $\left[\mathrm{MnCl}_{6}\right]^{3-}$, respectively, are

1 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
2 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274138 The hybridizations of N-orbitals in $\mathrm{NO}_{3}^{-}, \mathrm{NO}_{2}^{-}$and $\mathrm{NH}_{4}^{+}$respectively are

1 $\mathrm{sp}^{2}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
2 $\mathrm{sp}, \mathrm{sp}^{3}, \mathrm{sp}^{2}$
3 $\mathrm{sp}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
4 $\mathrm{sp}^{2}, \mathrm{sp}, \mathrm{sp}^{3}$
COORDINATION COMPOUNDS

274139 Match the following ions with the corresponding hybridization of their central atoms?
| Ions | | Hybridization | |
| :--- | :--- | :--- | :--- |
| (i) | $\mathrm{NO}_3^{-}$ | (a) | $\mathrm{sp}^3$ |
| (ii) | $\mathrm{NH}_2^{-}$ | (b) | $\mathrm{sp}$ |
| (iii) | $\mathrm{SCN}^{-}$ | (c) | $\mathrm{sp}^3 \mathrm{~d}$ |
| (iv) | $\mathrm{ICl}_3$ | (d) | $\mathrm{sp}^2$ |

1 (i-d), (ii - a), (iii-b), (iv - c)
2 $(\mathrm{i}-\mathrm{c}),(\mathrm{ii}-\mathrm{b}),(\mathrm{iii}-\mathrm{a}),(\mathrm{iv}-\mathrm{d})$
3 $(\mathrm{i}-\mathrm{a}),(\mathrm{ii}-\mathrm{d}),(\mathrm{iii}-\mathrm{c}),(\mathrm{iv}-\mathrm{b})$
4 $(\mathrm{i}-\mathrm{b}),(\mathrm{ii}-\mathrm{c}),(\mathrm{iii}-\mathrm{d}),(\mathrm{iv}-\mathrm{a})$
COORDINATION COMPOUNDS

274140 Match the following based on valence bond theory?
| Hybridi- zation | Geometry | Complex structure |
| :--- | :--- | :--- |
| $(\mathrm{A}) \mathrm{sp}^3$ | (i) Square planar | (p) $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ |
| $(\mathrm{B}) \mathrm{d}^2 \mathrm{sp}^3$ | (ii) Tetrahedral | (q) $\left[\mathrm{ZnCl}_4\right]^{2-}$ |
| (C) dsp ${ }^2$ | (iii) Octahedral | (r) $\left[\mathrm{Ni}\left(\mathrm{NH}_3\right)_4\right]^{2+}$ |
| | | (s) $\left[\mathrm{Ag}(\mathrm{CN})_2\right]^{-}$ |

1 (A-ii-q), (B-iii-p), (C-i-r)
2 (A-ii-q), (B-iii-r), (C-i-s)
3 (A-i-q), (B-iii-p), (C-ii-r)
4 (A-ii-r), (B-iii-s), (C-i-q)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
COORDINATION COMPOUNDS

274137 The type of hybridisation and magnetic property of the complex $\left[\mathrm{MnCl}_{6}\right]^{3-}$, respectively, are

1 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and diamagnetic
2 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and diamagnetic
3 $\mathrm{d}^{2} \mathrm{sp}^{3}$ and paramagnetic
4 $\mathrm{sp}^{3} \mathrm{~d}^{2}$ and paramagnetic
COORDINATION COMPOUNDS

274138 The hybridizations of N-orbitals in $\mathrm{NO}_{3}^{-}, \mathrm{NO}_{2}^{-}$and $\mathrm{NH}_{4}^{+}$respectively are

1 $\mathrm{sp}^{2}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
2 $\mathrm{sp}, \mathrm{sp}^{3}, \mathrm{sp}^{2}$
3 $\mathrm{sp}, \mathrm{sp}^{2}, \mathrm{sp}^{3}$
4 $\mathrm{sp}^{2}, \mathrm{sp}, \mathrm{sp}^{3}$
COORDINATION COMPOUNDS

274139 Match the following ions with the corresponding hybridization of their central atoms?
| Ions | | Hybridization | |
| :--- | :--- | :--- | :--- |
| (i) | $\mathrm{NO}_3^{-}$ | (a) | $\mathrm{sp}^3$ |
| (ii) | $\mathrm{NH}_2^{-}$ | (b) | $\mathrm{sp}$ |
| (iii) | $\mathrm{SCN}^{-}$ | (c) | $\mathrm{sp}^3 \mathrm{~d}$ |
| (iv) | $\mathrm{ICl}_3$ | (d) | $\mathrm{sp}^2$ |

1 (i-d), (ii - a), (iii-b), (iv - c)
2 $(\mathrm{i}-\mathrm{c}),(\mathrm{ii}-\mathrm{b}),(\mathrm{iii}-\mathrm{a}),(\mathrm{iv}-\mathrm{d})$
3 $(\mathrm{i}-\mathrm{a}),(\mathrm{ii}-\mathrm{d}),(\mathrm{iii}-\mathrm{c}),(\mathrm{iv}-\mathrm{b})$
4 $(\mathrm{i}-\mathrm{b}),(\mathrm{ii}-\mathrm{c}),(\mathrm{iii}-\mathrm{d}),(\mathrm{iv}-\mathrm{a})$
COORDINATION COMPOUNDS

274140 Match the following based on valence bond theory?
| Hybridi- zation | Geometry | Complex structure |
| :--- | :--- | :--- |
| $(\mathrm{A}) \mathrm{sp}^3$ | (i) Square planar | (p) $\left[\mathrm{Fe}(\mathrm{CN})_6\right]^{3-}$ |
| $(\mathrm{B}) \mathrm{d}^2 \mathrm{sp}^3$ | (ii) Tetrahedral | (q) $\left[\mathrm{ZnCl}_4\right]^{2-}$ |
| (C) dsp ${ }^2$ | (iii) Octahedral | (r) $\left[\mathrm{Ni}\left(\mathrm{NH}_3\right)_4\right]^{2+}$ |
| | | (s) $\left[\mathrm{Ag}(\mathrm{CN})_2\right]^{-}$ |

1 (A-ii-q), (B-iii-p), (C-i-r)
2 (A-ii-q), (B-iii-r), (C-i-s)
3 (A-i-q), (B-iii-p), (C-ii-r)
4 (A-ii-r), (B-iii-s), (C-i-q)