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According to the definition of enthalpy, H= E+PVE + PV According to the definition of enthalpy, H =blank, so \Delta H =blank. For an ideal gas at constant temperature and volume, \Delta (PV) = V \Delta P =blank. For this reaction, \Delta n is blank. Thus V \Delta P or \Delta (PV) is blank. Because \Delta H =blank, the blank\Delta (PV) term means that \Delta E is larger than \Delta H., so ΔH= According to the definition of enthalpy, H =blank, so \Delta H =blank. For an ideal gas at constant temperature and volume, \Delta (PV) = V \Delta P =blank. For this reaction, \Delta n is blank. Thus V \Delta P or \Delta (PV) is blank. Because \Delta H =blank, the blank\Delta (PV) term means that \Delta E is larger than \Delta H.. For an ideal gas at constant temperature and volume, Δ(PV)=VΔP= According to the definition of enthalpy, H =blank, so \Delta H =blank. For an ideal gas at constant temperature and volume, \Delta (PV) = V \Delta P =blank. For this reaction, \Delta n is blank. Thus V \De
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According to the definition of enthalpy, H= E+PVE + PV According to the definition of enthalpy, H =b...
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