03. Hybridisation
Hydrocarbons

230679 In $\stackrel{1}{\mathrm{C}} \mathbf{H}_2=\stackrel{2}{\mathrm{C}}=\stackrel{3}{\mathrm{C}} \mathbf{H}-\stackrel{4}{\mathrm{C}} \mathbf{H}_3$ molecule, the hybridization of carbon $1,2,3$ and 4 respectively,

1 $\mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^3$
2 $\mathrm{sp}^3, \mathrm{sp}, \mathrm{sp}^3, \mathrm{sp}^3$
3 $\mathrm{sp}^2, \mathrm{sp}, \mathrm{sp^{2 } , ~} \mathrm{sp} \mathrm{p}^3$
4 $\mathrm{sp}^2, \mathrm{sp}^3, \mathrm{sp}^2, \mathrm{sp}$
Hydrocarbons

230683 The number of $\sigma$ and $\pi$ bonds present in ethene is:

1 $6 \sigma$
2 $3 \sigma$
3 $4 \sigma, 2 \pi$
4 $5 \sigma, 1 \pi$
Hydrocarbons

230684 Hybridisation states of $\mathrm{C}$ in $\mathrm{CH}_3^{+}$and $\mathrm{CH}_4$ are

1 $s p^2$ and $s p^3$
2 $\mathrm{sp}^3$ and $\mathrm{sp}^2$
3 $\mathrm{sp}^2$ and $\mathrm{sp}^2$
4 $\mathrm{sp}^3$ and $\mathrm{sp}^3$
Hydrocarbons

230685 Which of the following represents the given mode of hybridization $s p^2-s p^2-s p$ from left to right?

1 $\mathrm{H}_2 \mathrm{C}=\mathrm{CH}-\mathrm{C} \equiv \mathrm{N}$
2 $\mathrm{CH} \equiv \mathrm{C}-\mathrm{C} \equiv \mathrm{CH}$
3 $\mathrm{H}_2 \mathrm{C}=\mathrm{C}=\mathrm{CH}_2$
4 original image
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Hydrocarbons

230679 In $\stackrel{1}{\mathrm{C}} \mathbf{H}_2=\stackrel{2}{\mathrm{C}}=\stackrel{3}{\mathrm{C}} \mathbf{H}-\stackrel{4}{\mathrm{C}} \mathbf{H}_3$ molecule, the hybridization of carbon $1,2,3$ and 4 respectively,

1 $\mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^3$
2 $\mathrm{sp}^3, \mathrm{sp}, \mathrm{sp}^3, \mathrm{sp}^3$
3 $\mathrm{sp}^2, \mathrm{sp}, \mathrm{sp^{2 } , ~} \mathrm{sp} \mathrm{p}^3$
4 $\mathrm{sp}^2, \mathrm{sp}^3, \mathrm{sp}^2, \mathrm{sp}$
Hydrocarbons

230683 The number of $\sigma$ and $\pi$ bonds present in ethene is:

1 $6 \sigma$
2 $3 \sigma$
3 $4 \sigma, 2 \pi$
4 $5 \sigma, 1 \pi$
Hydrocarbons

230684 Hybridisation states of $\mathrm{C}$ in $\mathrm{CH}_3^{+}$and $\mathrm{CH}_4$ are

1 $s p^2$ and $s p^3$
2 $\mathrm{sp}^3$ and $\mathrm{sp}^2$
3 $\mathrm{sp}^2$ and $\mathrm{sp}^2$
4 $\mathrm{sp}^3$ and $\mathrm{sp}^3$
Hydrocarbons

230685 Which of the following represents the given mode of hybridization $s p^2-s p^2-s p$ from left to right?

1 $\mathrm{H}_2 \mathrm{C}=\mathrm{CH}-\mathrm{C} \equiv \mathrm{N}$
2 $\mathrm{CH} \equiv \mathrm{C}-\mathrm{C} \equiv \mathrm{CH}$
3 $\mathrm{H}_2 \mathrm{C}=\mathrm{C}=\mathrm{CH}_2$
4 original image
Hydrocarbons

230679 In $\stackrel{1}{\mathrm{C}} \mathbf{H}_2=\stackrel{2}{\mathrm{C}}=\stackrel{3}{\mathrm{C}} \mathbf{H}-\stackrel{4}{\mathrm{C}} \mathbf{H}_3$ molecule, the hybridization of carbon $1,2,3$ and 4 respectively,

1 $\mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^3$
2 $\mathrm{sp}^3, \mathrm{sp}, \mathrm{sp}^3, \mathrm{sp}^3$
3 $\mathrm{sp}^2, \mathrm{sp}, \mathrm{sp^{2 } , ~} \mathrm{sp} \mathrm{p}^3$
4 $\mathrm{sp}^2, \mathrm{sp}^3, \mathrm{sp}^2, \mathrm{sp}$
Hydrocarbons

230683 The number of $\sigma$ and $\pi$ bonds present in ethene is:

1 $6 \sigma$
2 $3 \sigma$
3 $4 \sigma, 2 \pi$
4 $5 \sigma, 1 \pi$
Hydrocarbons

230684 Hybridisation states of $\mathrm{C}$ in $\mathrm{CH}_3^{+}$and $\mathrm{CH}_4$ are

1 $s p^2$ and $s p^3$
2 $\mathrm{sp}^3$ and $\mathrm{sp}^2$
3 $\mathrm{sp}^2$ and $\mathrm{sp}^2$
4 $\mathrm{sp}^3$ and $\mathrm{sp}^3$
Hydrocarbons

230685 Which of the following represents the given mode of hybridization $s p^2-s p^2-s p$ from left to right?

1 $\mathrm{H}_2 \mathrm{C}=\mathrm{CH}-\mathrm{C} \equiv \mathrm{N}$
2 $\mathrm{CH} \equiv \mathrm{C}-\mathrm{C} \equiv \mathrm{CH}$
3 $\mathrm{H}_2 \mathrm{C}=\mathrm{C}=\mathrm{CH}_2$
4 original image
Hydrocarbons

230679 In $\stackrel{1}{\mathrm{C}} \mathbf{H}_2=\stackrel{2}{\mathrm{C}}=\stackrel{3}{\mathrm{C}} \mathbf{H}-\stackrel{4}{\mathrm{C}} \mathbf{H}_3$ molecule, the hybridization of carbon $1,2,3$ and 4 respectively,

1 $\mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^2, \mathrm{sp}^3$
2 $\mathrm{sp}^3, \mathrm{sp}, \mathrm{sp}^3, \mathrm{sp}^3$
3 $\mathrm{sp}^2, \mathrm{sp}, \mathrm{sp^{2 } , ~} \mathrm{sp} \mathrm{p}^3$
4 $\mathrm{sp}^2, \mathrm{sp}^3, \mathrm{sp}^2, \mathrm{sp}$
Hydrocarbons

230683 The number of $\sigma$ and $\pi$ bonds present in ethene is:

1 $6 \sigma$
2 $3 \sigma$
3 $4 \sigma, 2 \pi$
4 $5 \sigma, 1 \pi$
Hydrocarbons

230684 Hybridisation states of $\mathrm{C}$ in $\mathrm{CH}_3^{+}$and $\mathrm{CH}_4$ are

1 $s p^2$ and $s p^3$
2 $\mathrm{sp}^3$ and $\mathrm{sp}^2$
3 $\mathrm{sp}^2$ and $\mathrm{sp}^2$
4 $\mathrm{sp}^3$ and $\mathrm{sp}^3$
Hydrocarbons

230685 Which of the following represents the given mode of hybridization $s p^2-s p^2-s p$ from left to right?

1 $\mathrm{H}_2 \mathrm{C}=\mathrm{CH}-\mathrm{C} \equiv \mathrm{N}$
2 $\mathrm{CH} \equiv \mathrm{C}-\mathrm{C} \equiv \mathrm{CH}$
3 $\mathrm{H}_2 \mathrm{C}=\mathrm{C}=\mathrm{CH}_2$
4 original image