Given the following information at 25°C, Calculate AH° for the combustion of methane, CH4, according to the equation

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The image contains a table and a multiple-choice question related to enthalpy. The table lists the standard enthalpy of formation (\( \Delta H_f^\circ \)) for different chemical species in kilojoules per mole (kJ/mol):

| Species | \( \Delta H_f^\circ \) (kJ/mol) |
|---------|------------------------|
| CH₄(g)  | -74.81                 |
| CO₂(g)  | -393.5                 |
| H₂O(l)  | -285.8                 |
| O₂(g)   | 0                      |

Below the table, a question is posed with options for answers, likely related to calculating the change in enthalpy for a reaction involving these species:

Select the correct \(\Delta H\) value:
- a) -2039.91 kJ
- b) -1039.91 kJ
- c) 1890.29 kJ
- d) -890.29 kJ

This setup suggests a calculation involving the enthalpy of reaction, possibly using Hess's Law or applying the formula for enthalpy change based on the stoichiometry of a chemical equation.
Transcribed Image Text:The image contains a table and a multiple-choice question related to enthalpy. The table lists the standard enthalpy of formation (\( \Delta H_f^\circ \)) for different chemical species in kilojoules per mole (kJ/mol): | Species | \( \Delta H_f^\circ \) (kJ/mol) | |---------|------------------------| | CH₄(g) | -74.81 | | CO₂(g) | -393.5 | | H₂O(l) | -285.8 | | O₂(g) | 0 | Below the table, a question is posed with options for answers, likely related to calculating the change in enthalpy for a reaction involving these species: Select the correct \(\Delta H\) value: - a) -2039.91 kJ - b) -1039.91 kJ - c) 1890.29 kJ - d) -890.29 kJ This setup suggests a calculation involving the enthalpy of reaction, possibly using Hess's Law or applying the formula for enthalpy change based on the stoichiometry of a chemical equation.
Given the following information at 25°C, calculate ΔH° for the combustion of methane, CH₄, according to the equation:

\[ \text{CH}_4(g) + 2\text{O}_2(g) → \text{CO}_2(g) + 2\text{H}_2\text{O}(l) \]

| Species    | ΔH°f (kJ/mol) |
|------------|---------------|
| CH₄(g)     | -74.81        |
| CO₂(g)     | -393.5        |
| H₂O(l)     | -285.8        |
| O₂(g)      | 0             |

The options for the ΔH° calculation are:

a) -2039.91 kJ

\[ \]
Transcribed Image Text:Given the following information at 25°C, calculate ΔH° for the combustion of methane, CH₄, according to the equation: \[ \text{CH}_4(g) + 2\text{O}_2(g) → \text{CO}_2(g) + 2\text{H}_2\text{O}(l) \] | Species | ΔH°f (kJ/mol) | |------------|---------------| | CH₄(g) | -74.81 | | CO₂(g) | -393.5 | | H₂O(l) | -285.8 | | O₂(g) | 0 | The options for the ΔH° calculation are: a) -2039.91 kJ \[ \]
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