Consider the reaction shown below. Calculate the DH for this reaction using the provided bond dissociation energies: CH3-H = 439 kJ/mol; F-F = 159 kJ/mol; CH3-F = 452 kJ/mol; H-F =569 kJ/mol.

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Consider the reaction shown below. Calculate the DH for this reaction using the provided bond dissociation energies: CH3-H = 439 kJ/mol; F-F = 159 kJ/mol; CH3-F = 452 kJ/mol; H-F =569 kJ/mol.

**Transcription:**

Chemical Reaction:
\[ \text{CH}_4 + \text{F}_2 \rightarrow \text{CH}_3\text{F} + \text{H-F} \]

Choices for the reaction enthalpy change:
- a. \( +1619 \, \text{kJ/mol} \)
- b. \( -1619 \, \text{kJ/mol} \)
- c. \( +423 \, \text{kJ/mol} \)
- d. \( -423 \, \text{kJ/mol} \)


**Explanation:**

The image shows a chemical reaction where methane (\( \text{CH}_4 \)) and fluorine (\( \text{F}_2 \)) react to form fluoromethane (\( \text{CH}_3\text{F} \)) and hydrogen fluoride (HF). Below this reaction, there are four options provided that likely represent possible values for the enthalpy change (\( \Delta H \)) associated with the reaction. The options are given in kilojoules per mole (\( \text{kJ/mol} \)).
Transcribed Image Text:**Transcription:** Chemical Reaction: \[ \text{CH}_4 + \text{F}_2 \rightarrow \text{CH}_3\text{F} + \text{H-F} \] Choices for the reaction enthalpy change: - a. \( +1619 \, \text{kJ/mol} \) - b. \( -1619 \, \text{kJ/mol} \) - c. \( +423 \, \text{kJ/mol} \) - d. \( -423 \, \text{kJ/mol} \) **Explanation:** The image shows a chemical reaction where methane (\( \text{CH}_4 \)) and fluorine (\( \text{F}_2 \)) react to form fluoromethane (\( \text{CH}_3\text{F} \)) and hydrogen fluoride (HF). Below this reaction, there are four options provided that likely represent possible values for the enthalpy change (\( \Delta H \)) associated with the reaction. The options are given in kilojoules per mole (\( \text{kJ/mol} \)).
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