What happens when the following substance reacts with water in the presence of concentrated sulfuric acid?   a)  An alkyne is produced.   b)  An alcohol is produced.   c)  The substance is converted to its cis isomer.   d)  The substance is converted to its trans isomer.

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What happens when the following substance reacts with water in the presence of concentrated sulfuric acid?
 

a) 

An alkyne is produced.
 

b) 

An alcohol is produced.
 

c) 

The substance is converted to its cis isomer.
 

d) 

The substance is converted to its trans isomer.
### Ethene (Ethylene) Molecular Model

This image is a molecular model of Ethene, also known as Ethylene, a hydrocarbon with the chemical formula \( C_2H_4 \).

**Structure Explanation:**

- **Carbon Atoms (Black Spheres):** The model shows two carbon atoms each represented by black spheres. These carbon atoms are double-bonded to each other. 
- **Hydrogen Atoms (White Spheres):** Each carbon atom is also single-bonded to two hydrogen atoms, represented by white spheres.
- **Double Bond:** The double bond between the two carbon atoms is shown using two connecting lines. This bond is crucial for the chemical properties of ethene.

**Chemical Bonding:**

- **Sigma and Pi Bonds:** In ethene, the carbon atoms are double-bonded via a combination of one sigma (σ) bond and one pi (π) bond.
- **Geometry:** The geometry around each carbon atom is planar and triangular, with a bond angle of approximately 120 degrees.

**Applications:**
Ethene is an important basic building block in the petrochemical industry and is widely used in the production of polyethylene, a common plastic. It is also used in the synthesis of various organic compounds and in agriculture as a plant hormone that regulates growth.

Understanding the structure and bonding in ethene is fundamental for students studying organic chemistry and materials science. This molecular representation helps in visualizing the bonding and geometry of the molecule, providing a clearer understanding of its chemical behavior and reactivity.
Transcribed Image Text:### Ethene (Ethylene) Molecular Model This image is a molecular model of Ethene, also known as Ethylene, a hydrocarbon with the chemical formula \( C_2H_4 \). **Structure Explanation:** - **Carbon Atoms (Black Spheres):** The model shows two carbon atoms each represented by black spheres. These carbon atoms are double-bonded to each other. - **Hydrogen Atoms (White Spheres):** Each carbon atom is also single-bonded to two hydrogen atoms, represented by white spheres. - **Double Bond:** The double bond between the two carbon atoms is shown using two connecting lines. This bond is crucial for the chemical properties of ethene. **Chemical Bonding:** - **Sigma and Pi Bonds:** In ethene, the carbon atoms are double-bonded via a combination of one sigma (σ) bond and one pi (π) bond. - **Geometry:** The geometry around each carbon atom is planar and triangular, with a bond angle of approximately 120 degrees. **Applications:** Ethene is an important basic building block in the petrochemical industry and is widely used in the production of polyethylene, a common plastic. It is also used in the synthesis of various organic compounds and in agriculture as a plant hormone that regulates growth. Understanding the structure and bonding in ethene is fundamental for students studying organic chemistry and materials science. This molecular representation helps in visualizing the bonding and geometry of the molecule, providing a clearer understanding of its chemical behavior and reactivity.
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