Describe the shapes of carbon compounds and the effects of hybridization of carbon atoms.

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(N/A) The knowledge of fundamental concepts of molecular structure helps in understanding and predicting the properties of organic compounds.
The tetravalence of carbon and the formation of covalent bonds are explained in terms of its electronic configuration and the hybridization of $s$ and $p$-orbitals.
Property$CH_4$ (Methane)$C_2H_6$ (Ethane)$C_2H_4$ (Ethene)$C_2H_2$ (Ethyne)
Hybridization$sp^3$$sp^3$$sp^2$$sp$
ShapeTetrahedralTetrahedralTrigonal planarLinear
Bond angle$109.5^{\circ}$$109.5^{\circ}$$120^{\circ}$$180^{\circ}$
$s$-character$25\%$$25\%$$33.3\%$$50\%$

As the $s$-character increases $(sp^3$ $\rightarrow sp^2$ $\rightarrow sp)$:
$1$. Electronegativity of carbon increases.
$2$. Bond length between carbon atoms decreases.
$3$. Bond enthalpy (strength) increases.

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Similar Questions

In the molecule $HC \equiv C - CH_2 - CH = CH - CH_3$,what is the type of hybridization for the $C_2 - C_3$ bond?

Number of $sp$ hybridised carbon atoms in the given compound $CH_2=CH-C\equiv C-CH_2-CN$ is:

Which one amongst the following possesses an $sp$ hybridized carbon in its structure?

What is the type of hybridisation of each carbon atom in the following compounds?
$(a)$ $CH_{3}Cl$
$(b)$ $(CH_{3})_{2}CO$
$(c)$ $CH_{3}CN$
$(d)$ $HCONH_{2}$
$(e)$ $CH_{3}CH=CHCN$

In the compound $CH_2 = CH - CH_2 - CH_2 - C \equiv CH$,the $C_2 - C_3$ bond is of the type

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