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The standard enthalpy of formation is simply the enthalpy of formation with standard conditions as the specified state. Having defined a universal reference state, we can discuss a new term called standard enthalpy of formation. This reference state corresponds to 25☌ (77☏) and 10⁵ Pa = 1 bar. In processes involving chemical energy changes, all substances must have the same reference state to be able to use the enthalpy of formation consistently. In other words, it represents the energy required to take that substance to a specified state. We can define the enthalpy of formation as the enthalpy of a substance at a specified state due to its chemical composition. This calculator uses the enthalpy of formation of the compounds to calculate the enthalpy change from a reaction scheme.
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Nuclear energy: it's associated with the atomic structure of the elements that compose the molecules.The CO 2 chemical energy is lower than the energy of the original constituents, as part of it was released in the combustion process. The formation of CO 2 from carbon (C) and dioxygen (O 2) combustion is an example of a change in chemical energy. Chemical energy: Different molecules will have different amounts of energy associated with the atomic bonds that compose their specific molecular structure.For example, when we heat a liquid and cause it to change to gas, part of the energy doesn't go to the increase in the temperature but to achieve the phase change by overcoming the molecular forces that make the liquid phase possible. Latent energy: this type of energy is associated with the phase of a system.For gases, for example, molecular kinetic energy increases with temperature and pressure. Sensible energy: it is associated with the kinetic energy of the molecules.The molecules of a system possess four types of energy:
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