O2 `H time (as in years)

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Predict the product of the following reaction. Between the reactant (benzaldehyde) and the product, which has the higher boiling point and why?

### Chemical Reaction Process Over Time

#### Oxidation Process of Benzaldehyde

This diagram represents the oxidation process of benzaldehyde over a period of time, measured in years.

**Structure:**
- The structure on the left side of the equation is benzaldehyde. This organic compound has a benzene ring attached to a formyl group (-CHO).

**Process:**
- As time progresses, benzaldehyde undergoes oxidation in the presence of oxygen (O₂). The arrow points right, indicating the direction of the chemical reaction as time advances.

**Oxygen and Time:**
- The oxidative process shown is driven by the presence of oxygen (O₂), and it takes place over a significant duration, measured in years.

This reaction is an example of how organic compounds can undergo slow, ambient oxidation when exposed to oxygen over extended periods. Understanding such transformations is crucial in fields such as organic chemistry and environmental science.
Transcribed Image Text:### Chemical Reaction Process Over Time #### Oxidation Process of Benzaldehyde This diagram represents the oxidation process of benzaldehyde over a period of time, measured in years. **Structure:** - The structure on the left side of the equation is benzaldehyde. This organic compound has a benzene ring attached to a formyl group (-CHO). **Process:** - As time progresses, benzaldehyde undergoes oxidation in the presence of oxygen (O₂). The arrow points right, indicating the direction of the chemical reaction as time advances. **Oxygen and Time:** - The oxidative process shown is driven by the presence of oxygen (O₂), and it takes place over a significant duration, measured in years. This reaction is an example of how organic compounds can undergo slow, ambient oxidation when exposed to oxygen over extended periods. Understanding such transformations is crucial in fields such as organic chemistry and environmental science.
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