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Cracking a Hydrocarbon - Carbon & its Compounds Video Lecture - Class 10

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FAQs on Cracking a Hydrocarbon - Carbon & its Compounds Video Lecture - Class 10

1. What is cracking of hydrocarbons?
Ans. Cracking of hydrocarbons is a process in which larger hydrocarbon molecules are broken down into smaller, more useful molecules. It is a type of thermal decomposition reaction that is used to produce substances such as petrol, diesel, and other valuable products.
2. How is cracking of hydrocarbons carried out?
Ans. Cracking of hydrocarbons is usually carried out by heating the hydrocarbon molecules to a high temperature (around 600-700°C) in the presence of a catalyst, such as zeolite or alumina. This process is known as catalytic cracking and it helps in breaking the larger hydrocarbon molecules into smaller ones.
3. What are the products obtained from cracking of hydrocarbons?
Ans. The products obtained from the cracking of hydrocarbons depend on the type of hydrocarbon being cracked. Generally, the process produces a mixture of smaller hydrocarbon molecules, such as ethene, propene, butene, and pentene. These smaller molecules are then used as starting materials for various industries, including the production of plastics, synthetic fibers, and fuels.
4. Why is cracking of hydrocarbons important?
Ans. Cracking of hydrocarbons is important because it allows us to obtain more useful products from larger hydrocarbon molecules. By breaking down these molecules, we can obtain smaller molecules that have a wide range of applications in various industries. Additionally, cracking helps in increasing the supply of valuable substances like petrol and diesel, which are essential for transportation.
5. What are the conditions required for successful cracking of hydrocarbons?
Ans. Successful cracking of hydrocarbons requires high temperatures (around 600-700°C) and the presence of a catalyst. The catalyst helps in reducing the activation energy required for the cracking reaction to occur. Additionally, the process is usually carried out under high pressure to increase the yield of desired products.
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