A reaction with a change in enthalpy (ΔH) of +620 kJ/mol indicates that it is endothermic, meaning it absorbs heat from its surroundings. This significant positive value suggests that a considerable amount of energy is required for the reaction to occur. Such reactions often result in a decrease in temperature of the surroundings unless heat is supplied externally. Overall, the high ΔH indicates that the reaction is not spontaneous under standard conditions without additional energy input.
it can never be spontanious
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Either the change (which the delta refers to) of the height (which the h represents).
What reaction to what? You didn't specify.
It represents the heat involved in a reaction.
it can never be spontanious
it is never spontaneous
it can never be spontanious
It can be said to be exothermic since H is negative. Also below a temp of 3708ºC, the reaction will be spontaneous because ∆G will be negative. This is from ∆G = ∆H - T∆S.
It is spontaneous.
The reaction is exothermic because the enthalpy change is negative (-890 kJ/mol). The reaction may be spontaneous at low temperatures due to the negative entropy change (-0.24 kJ/(mol K)), which decreases the overall spontaneity of the reaction.
It is spontaneous at 2000 K.
The h reaction is the difference between Hf products and Hf reactants - apex
The reaction is exothermic.
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Either the change (which the delta refers to) of the height (which the h represents).
It represents the heat involved in a reaction.