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1kJ 1/Hfusion g/mol solid

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How is the Hfusion used to calculate the energy needed to melt a mass of solid?

Grams solid mol/g Hfusion


How is the delta Hfusion used to calculate the energy needed to melt a mass of solid?

The delta Hfusion, or enthalpy of fusion, is the amount of energy required to convert a unit mass of a solid into a liquid at its melting point without changing its temperature. To calculate the energy needed to melt a specific mass of solid, you multiply the mass of the solid by the delta Hfusion value. The formula is: Energy = mass × ΔHfusion. This gives the total energy required to completely melt the given mass of the substance.


How is the hfusion used to calculate the mass of solid that 1kj of enery will melt?

The heat fusion (hfusion) is the amount of energy required to melt a unit mass of a solid at its melting point without changing its temperature. To calculate the mass of solid that 1 kJ of energy will melt, you can use the formula ( m = \frac{Q}{hfusion} ), where ( m ) is the mass, ( Q ) is the heat energy (1 kJ in this case), and ( hfusion ) is the heat of fusion for the specific solid. By rearranging the formula, you can determine the mass that can be melted with the given energy.


How is the Hfusion used to calculate the needed to melt the mass of a solid?

Grams solid mol/g Hfusion


How is stoichiometry used to calculate energy absorbed when mass of solid melts?

Grams solid × mol/g × Hfusion


How is stoichiometry used to calculate energy absorbed when a mass of a solid melts?

Grams solid × mol/g × Hfusion


How is the Hfusion used to calculate the energy released when a mass of liquid freezes?

Grams Liquid x mol/g x Hfusion


How is hfusion used to calculate the energy needed to mention a mass of a solid?

The formula for calculating the energy needed to melt a mass of a solid is Heat energy = mass x specific heat capacity x ΔT + mass x heat of fusion. This formula includes the specific heat capacity of the material, the change in temperature, and the heat of fusion required to melt the material.


How is stoichiometery used to calculate energy absorbed when a mass of a solid melts?

Stoichiometry can be used to calculate the energy absorbed when a mass of a solid melts by considering the heat energy required to overcome the intermolecular forces holding the solid together. By using the heat capacity of the solid, the mass of the solid, and the enthalpy of fusion for the substance, stoichiometry can help determine the amount of energy needed for the solid to melt.


How is the delta h used to calculate the energy needed to melt a mass of solid?

The enthalpy change of fusion (ΔH_fus) represents the amount of energy required to melt a unit mass of a solid at its melting point. To calculate the total energy needed to melt a specific mass of solid, you can use the formula: ( Q = m \times ΔH_fus ), where ( Q ) is the total energy, ( m ) is the mass of the solid, and ( ΔH_fus ) is the enthalpy of fusion. By multiplying the mass by the enthalpy of fusion, you obtain the total energy required for the phase change from solid to liquid.


How is stoichiometry used to calculate energy when a mass of liquid freezes?

Grams liquid × mol/g × Hfusion


How is the h fusion used to calculate the mass of a solid that 1 kj of energy will melt?

The enthalpy of fusion (ΔH fusion) is the amount of energy required to melt one mole of a solid at its melting point. To calculate the mass of a solid that 1 kJ of energy will melt, you can use the equation: mass = energy (in kJ) / enthalpy of fusion (in kJ/mol). It gives you the mass of the substance in moles, which you can then convert to grams using the molar mass of the substance.