QUESTION IMAGE
Question
check the box under each molecule in the table below that is an isomer of this molecule: if there are no isomers, check the none of the above box under the table. none of the above
Step1: Recall isomer definition
Isomers have the same molecular formula but different structures. First, find the molecular formula of the given molecule and then of each option.
Step2: Analyze the given molecule
The given molecule is a di - alkene. Assume it has \(n\) carbon atoms and \(m\) hydrogen atoms. Counting the carbon - carbon double bonds and single bonds and hydrogen atoms attached to carbon atoms, we can determine its molecular formula. Let's assume it has 6 carbon atoms and 10 hydrogen atoms (\(C_6H_{10}\)).
Step3: Analyze first option
The first option is an alkane (saturated hydrocarbon). Its structure is different from the given alkene and it has a different number of hydrogen atoms for the same number of carbon atoms. It is not an isomer.
Step4: Analyze second option
Check the number of carbon - carbon double bonds and the overall connectivity. Compare the molecular formula. If it is \(C_6H_{10}\) and has a different structure from the given molecule, it is an isomer.
Step5: Analyze third option
Examine the functional groups and the carbon - atom connectivity. Compare the molecular formula. If it is \(C_6H_{10}\) and has a different structure, it is an isomer.
Step6: Analyze fourth option
Compare the molecular formula and the structure. If it is \(C_6H_{10}\) and has a different structure from the given molecule, it is an isomer.
(Without the actual molecular - formula calculations and detailed structural comparisons for each option which are based on the actual structures in the picture, we can't give a definite final answer. But this is the general step - by - step process).
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(Need to actually analyze the molecular formulas and structures of each option in the table to give a definite answer. For example, if the second and third options have the same molecular formula \(C_6H_{10}\) and different structures from the given molecule, the answer would be: Check the box under the second molecule and the box under the third molecule. But this is just an example, the real answer depends on the actual structures in the table.)