Enthalpy change of combustion per gram of methanol and isooctane is to be determined. Concept Introduction: The standard enthalpy change of combustion of a compound is the enthalpy change which occurs when one gram of the compound is burned completely in oxygen under standard conditions, and with everything in its standard state. Δ r H 0 = ΣnΔ f H 0 (products) - ΣnΔ f H 0 (reactants) The change in enthalpy, ΔH in kJ per mole of a given reactant for the reaction can be calculated as: Δ r H= enthalpy change number of moles
Enthalpy change of combustion per gram of methanol and isooctane is to be determined. Concept Introduction: The standard enthalpy change of combustion of a compound is the enthalpy change which occurs when one gram of the compound is burned completely in oxygen under standard conditions, and with everything in its standard state. Δ r H 0 = ΣnΔ f H 0 (products) - ΣnΔ f H 0 (reactants) The change in enthalpy, ΔH in kJ per mole of a given reactant for the reaction can be calculated as: Δ r H= enthalpy change number of moles
Enthalpy change of combustion per gram of methanol and isooctane is to be determined.
Concept Introduction:
The standard enthalpy change of combustion of a compound is the enthalpy change which occurs when one gram of the compound is burned completely in oxygen under standard conditions, and with everything in its standard state.
ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
The change in enthalpy, ΔH in kJ per mole of a given reactant for the reaction can be calculated as:
ΔrH=enthalpy changenumber of moles
Expert Solution & Answer
Answer to Problem 85GQ
The enthalpy change of combustion per gram of isooctane, is -47.82J/gK and the enthalpy change of combustion per gram of methanol is -22.68J/gK
Carbohydrates- Draw out the Hawthorne structure for a sugar from the list given in class. Make sure to write out all atoms except for carbons within the ring. Make sure that groups off the carbons in the ring are in the correct orientation above or below the plane. Make sure that bonds are in the correct orientation. Include the full name of the sugar.
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How many milliliters of 97.5(±0.5) wt% H2SO4 with a density of 1.84(±0.01) g/mL will you need to prepare 2.000 L of 0.110 M H2SO4?
If the uncertainty in delivering H2SO4 is ±0.01 mL, calculate the absolute uncertainty in the molarity (0.110 M). Assume there is negligible uncertainty in the formula mass of H2SO4 and in the final volume (2.000 L) and assume random error.
Don't used hand raiting and don't used Ai solution
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Calorimetry Concept, Examples and Thermochemistry | How to Pass Chemistry; Author: Melissa Maribel;https://www.youtube.com/watch?v=nSh29lUGj00;License: Standard YouTube License, CC-BY