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The lowest alkane which has ethyl group ...

The lowest alkane which has ethyl group is substituent has IUPAC name

A

2-Ethylpropane

B

2-Ethylbutane

C

3-Ethylpentane

D

None of these

Text Solution

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The correct Answer is:
To determine the IUPAC name of the lowest alkane that has an ethyl group as a substituent, we can follow these steps: ### Step 1: Identify the Alkane with the Ethyl Group The ethyl group (C2H5) can only be a substituent on a carbon chain. The simplest alkane that can accommodate an ethyl group must have at least 4 carbon atoms in the main chain because an ethyl group itself has 2 carbon atoms. ### Step 2: Consider the Possible Alkanes The alkanes we can consider are: - Propane (C3H8) - Butane (C4H10) - Pentane (C5H12) ### Step 3: Analyze Each Alkane 1. **Propane (C3H8)**: - If we try to attach an ethyl group to propane, we would need to have a total of 5 carbon atoms (3 from propane + 2 from ethyl). This means we cannot have an ethyl group as a substituent on propane. 2. **Butane (C4H10)**: - If we consider butane, we can attempt to place the ethyl group. However, if we try to place the ethyl group on butane, we would again exceed the number of carbons in the longest chain. The longest chain remains butane (4 carbons), and adding an ethyl group would not yield a valid structure. 3. **Pentane (C5H12)**: - Now, if we consider pentane, we have 5 carbon atoms. We can place the ethyl group on the third carbon of pentane. This gives us a structure where the main chain remains pentane, and we have an ethyl substituent. ### Step 4: Naming the Compound When we place the ethyl group on the third carbon of pentane, we name the compound as "3-ethylpentane". This is the correct IUPAC name for the compound. ### Conclusion The lowest alkane which has an ethyl group as a substituent has the IUPAC name **3-ethylpentane**. ---

To determine the IUPAC name of the lowest alkane that has an ethyl group as a substituent, we can follow these steps: ### Step 1: Identify the Alkane with the Ethyl Group The ethyl group (C2H5) can only be a substituent on a carbon chain. The simplest alkane that can accommodate an ethyl group must have at least 4 carbon atoms in the main chain because an ethyl group itself has 2 carbon atoms. ### Step 2: Consider the Possible Alkanes The alkanes we can consider are: - Propane (C3H8) ...
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