how does a straight - chain alkane that has five carbon atoms differ from a cycloalkane that has five carbon…

how does a straight - chain alkane that has five carbon atoms differ from a cycloalkane that has five carbon atoms?\nthe straight - chain alkane has at least one double or triple bond, but the cycloalkane has only single bonds.\nthe straight - chain alkane has only single bonds, but the cycloalkane has at least one double or triple bond.\nthe straight - chain alkane has two more hydrogen atoms than the cycloalkane.\nthe straight - chain alkane has two fewer hydrogen atoms than the cycloalkane.

how does a straight - chain alkane that has five carbon atoms differ from a cycloalkane that has five carbon atoms?\nthe straight - chain alkane has at least one double or triple bond, but the cycloalkane has only single bonds.\nthe straight - chain alkane has only single bonds, but the cycloalkane has at least one double or triple bond.\nthe straight - chain alkane has two more hydrogen atoms than the cycloalkane.\nthe straight - chain alkane has two fewer hydrogen atoms than the cycloalkane.

Answer

Answer:

The straight - chain alkane has two more hydrogen atoms than the cycloalkane.

Brief Explanations:

The general formula for a straight - chain alkane is $C_nH_{2n + 2}$, and for a cycloalkane is $C_nH_{2n}$. For $n = 5$, the straight - chain alkane ($C_5H_{12}$) has two more hydrogens than the cycloalkane ($C_5H_{10}$). Both have only single bonds.