MCQ
In a double bond connecting two atoms, there is a sharing of
  • A
    $2$ electrons
  • B
    $1$ electron
  • $4$ electrons
  • D
    All electrons

Answer

Correct option: C.
$4$ electrons
(c) In a double bond connecting two atom sharing of $4$ electrons take place as in ${H_2}C = C{H_2}$.

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Correct order of ionic radius
As an electron is brought from an infinite distance close to the nucleus of the atom, the energy of the electron-nucleus system :
Nitrating mixture is
Which of the following equations represents the standard enthalpy of formation:
Which of the following cycloalkane gives open chain compound, when reacts with bromine
A reaction, $A+B \rightarrow C+D+q$ is found to have a positive entropy change. The reaction will be
Among the oxides of nitrogen, $N_2 O,NO$ nnd $NO_2$ ,molecules with unpaired electrons are
Which of the following is correct ?
The entropy versus temperature plot for phases $\alpha$ and $\beta$ at 1 bar pressure is given. $S_{\mathrm{T}}$ and $S_0$ are entropies of the phases at temperatures $\mathrm{T}$ and $0 \mathrm{~K}$, respectively.

(image)

The transition temperature for $\alpha$ to $\beta$ phase change is $600 \mathrm{~K}$ and $C_{p, \beta}-C_{p, \alpha}=1 \mathrm{~J} \mathrm{~mol}^{-1} \mathrm{~K}^{-1}$. Assume $\left(C_{p, \beta}-C_{p, \alpha}\right)$ is independent of temperature in the range of 200 to $700 \mathrm{~K} . \mathrm{C}_{p, \alpha}$ and $C_{p, \beta}$ are heat capacities of $\alpha$ and $\beta$ phases, respectively.

($1$)The value of entropy change, $\mathrm{S}_\beta-\mathrm{S}_\alpha$ (in $\mathrm{J} \mathrm{mol}^{-1} \mathrm{~K}^{-1}$ ), at $300 \mathrm{~K}$ is. . . . . . .

[Use : $\ln 2=0.69$  Given : $S_\beta-S_\alpha=0$ at $\left.0 \mathrm{~K}\right]$

($2$) The value of enthalpy change, $\mathrm{H}_\beta-\mathrm{H}_\alpha$ (in $J$ mol ${ }^{-1}$ ), at $300 \mathrm{~K}$ is

Give the answer quetion ($1$) and ($2$)

The $IUPAC$ name ofis

$C{H_3} - \mathop {\mathop {\mathop {\mathop C\limits^| }\limits^{Cl}  - }\limits_{|\,\,\,\,} }\limits_{OH} C{H_2}CH = CHC{H_3}$