Visualize the structural formula of each of the following hydrocarbons. Which hydrocarbon has a double bond in its carbon skeleton?

(A) C3H8

(B) C2H6

(C) C2H4

(D) C2H2

Short Answer

Expert verified

(A) The option “C3H8” is false.

(B) The option “C2H6” is false.

(C) The option “C2H4” is true.

(D) The option “C2H2” is false.

Step by step solution

01

Hydrocarbon

Certain organic compounds consist of central carbon atoms, which are bonded to hydrogen atoms.These compounds are called hydrocarbons. There are four types, namely: alkanes, alkenes, alkynes, and aromatic hydrocarbon.

02

Explanation of option (A)

C3H8is the chemical formula of propane.

The structural formula of propane is as follows:

From the above structure, it can be observed that there are two single bonds between the three carbon atoms and eight single bonds between the carbon and hydrogen atoms of propane.

Thus, the double bond is absent in the carbon skeleton of propane.

Therefore, the given option is false.

03

Explanation of option (B)

C2H6is the chemical formula of ethane.

The structural formula of ethane is as follows:

From the above structure, it can be observed that there is one single bond between the two carbon atoms and six single bonds between the carbon and hydrogen atoms of ethane.

Thus, the double bond is absent in the carbon skeleton of ethane.

Therefore, the given option is false.

04

Explanation of option (C)

C2H4is the chemical formula of ethene.

The structural formula of ethene is as follows:

From the above structure, it can be observed that there is one double bond between the two carbon atoms and four single bonds between the carbon and hydrogen atoms of ethene.

Thus, the double bond is present in the carbon skeleton of ethene.

Therefore, the given option is true.

05

Explanation of option (D)

C2H2is the chemical formula of ethyne.

The structural formula of ethyne is as follows:

From the above structure, it can be observed that there is one triple bond between the two carbon atoms and two single bonds between the carbon and hydrogen atoms of ethyne.

Thus, a triple bond is present in the carbon skeleton of ethyne, but a double bond is absent.

Therefore, the given option is false.

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Most popular questions from this chapter

The synthesis of products is limited by the amount of reactants. (a) If one mole each of CH4, NH3, H2S, and CO2 is added to \({\bf{1}}\) liter of water in a flask, how many moles of hydrogen, carbon, oxygen, nitrogen, and sulfur are in the flask?

(b) Looking at the molecular formula in the table, how many moles of each element would be needed to make \({\bf{1}}.{\bf{0}}\) mole of glycine?

(c) What is the maximum number of moles of glycine that could be made in that flask, with the specified ingredients, if no other molecules were made? Explain.

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Some scientists think that life elsewhere in the universe might be based on the element silicon, rather than carbon, as on Earth. Look at the electron distribution diagram for Silicon in Figure 2.7 and draw the Lewis dot structure for silicon. What properties does silicon share with carbon that would make silicon-based life more likely than, say, neon-based life or aluminum-based life?

The earlier published experiment carried out by Miller did not include H2S in the reactants (see Figure 4.2). Which compounds shown in the data table can be made in the H2S experiment but could not be made in the earlier investigation?


Organic chemistry is currently defined as

(A) the study of compounds made only by living cells.

(B) the study of carbon compounds.

(C) the study of natural (as opposed to synthetic) compounds.

(D) the study of hydrocarbons.

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