THERMODYNAMICS: Use the given standard enthalpies of formation to calculate the AH° (in kJ) for the hypothetical reaction: (Round off final answer to ONE decimal place) 2X2D (g) + 3M2 (g) → 2X2M (I) +...


THERMODYNAMICS: Use the given standard enthalpies of formation to calculate the AH° (in kJ) for the hypothetical<br>reaction: (Round off final answer to ONE decimal place)<br>2X2D (g) + 3M2 (g) → 2X2M (I) + 2DM2 (g)<br>AH°f for X2D (g) = -23.8 kJ/mol<br>AH°f for DM2 (g) = -292.2 kJ/mol<br>AH°f for X2M (I) = -281.3 kJ/mol<br>AH°f for M2 (g) = 0 kJ/mol<br>Round your answer to 1 decimal place.<br>

Extracted text: THERMODYNAMICS: Use the given standard enthalpies of formation to calculate the AH° (in kJ) for the hypothetical reaction: (Round off final answer to ONE decimal place) 2X2D (g) + 3M2 (g) → 2X2M (I) + 2DM2 (g) AH°f for X2D (g) = -23.8 kJ/mol AH°f for DM2 (g) = -292.2 kJ/mol AH°f for X2M (I) = -281.3 kJ/mol AH°f for M2 (g) = 0 kJ/mol Round your answer to 1 decimal place.

Jun 09, 2022
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