The enthalpy change for the reaction using standard enthalpies has to be determined Concept Introduction: The standard enthalpy of formation is the enthalpy change for the formation of 1mol of the compound directly from its component elements in their standard states. Enthalpy change for the reaction Δ r H 0 = ΣnΔ f H 0 (products) - ΣnΔ f H 0 (reactants)
The enthalpy change for the reaction using standard enthalpies has to be determined Concept Introduction: The standard enthalpy of formation is the enthalpy change for the formation of 1mol of the compound directly from its component elements in their standard states. Enthalpy change for the reaction Δ r H 0 = ΣnΔ f H 0 (products) - ΣnΔ f H 0 (reactants)
The enthalpy change for the reaction using standard enthalpies has to be determined
Concept Introduction:
The standard enthalpy of formation is the enthalpy change for the formation of 1mol of the compound directly from its component elements in their standard states.
Enthalpy change for the reaction ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
(a)
Expert Solution
Explanation of Solution
Given,
ΔfH0(C)= 0 KJ/mol
ΔfH0(H2O)=-241.8kJ/mol
ΔfH0(CO)=-110.54kJ/mol
ΔfH0(H2)=0J/mol
Enthalpy change for the reaction ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
ΔrH° =(-110.54+0)-(0+-241.8)
ΔrH0=131.26 kJ/mol
So, the change in enthalpy of the reaction is 131.3kJ/mol
(b)
Interpretation Introduction
Interpretation:
The nature of the reaction has to be identified.
Concept Introduction:
The standard enthalpy of formation is the enthalpy change for the formation of 1mol of the compound directly from its component elements in their standard states.
Enthalpy change for the reaction ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
(b)
Expert Solution
Explanation of Solution
Given,
ΔfH0(C)= 0 KJ/mol
ΔfH0(H2O)=-241.8kJ/mol
ΔfH0(CO)=-110.54kJ/mol
ΔfH0(H2)=0J/mol
Enthalpy change for the reaction ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
ΔrH° =(-110.54+0)-(0+-241.8)
ΔrH0=131.26 kJ/mol
The change in enthalpy is +131.3kJ/mol, so it is endothermic reaction.
(c)
Interpretation Introduction
Interpretation:
The enthalpy change if 1000.0kg of carbon converted to water gas has to be calculated.
Concept Introduction:
The standard enthalpy of formation is the enthalpy change for the formation of 1mol of the compound directly from its component elements in their standard states.
Enthalpy change for the reaction ΔrH0=ΣnΔfH0(products)-ΣnΔfH0(reactants)
(c)
Expert Solution
Explanation of Solution
The change in enthalpy is +131.3kJ/mol,
Heat evolved when 1000Kg of carbon is converted to coal:
Identify and provide a concise explanation of a specific analytical instrument capable of detecting and quantifying trace compounds in food samples. Emphasise the instrumental capabilities relevant to trace compound analysis in the nominated food. Include the specific application name (eg: identification and quantification of mercury in salmon), outline a brief description of sample preparation procedures, and provide a summary of the obtained results from the analytical process.
Identify and provide an explanation of what 'Seperation Science' is. Also describe its importance with the respect to the chemical analysis of food. Provide specific examples.
5. Propose a Synthesis for the molecule below. You may use any starting materials containing 6
carbons or less (reagents that aren't incorporated into the final molecule such as PhзP do not
count towards this total, and the starting material can have whatever non-carbon functional
groups you want), and any of the reactions you have learned so far in organic chemistry I, II, and
III. Your final answer should show each step separately, with intermediates and conditions clearly
drawn.
H3C
CH3
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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