subject
Chemistry, 16.10.2019 16:30 jennyv191

Part a background information; solution already calculate the change in enthalpy (δh) for 1.0 mol of carbon dioxide (co2) initially at a volume of 5.00 l and a temperature of 298 k to a final volume of 10.00 l and a temperature of 373 k. explicitly state all assumptions along with a justification for any and all assumptions made. express your answer in units of kilojoules per mole (kj/mol)

the part i need with;

part b: the enthalpy is a common form of energy used in biochemical thermodynamics and is a state function, meaning the change in enthalpy (δh) for the process above should be independent of the path. explicitly illustrate this point by calculating the change in enthalpy for the expansion process above along a different path than you did in part (a) of this problem

not sure how to calculate along a different path. show work.

ansver
Answers: 2

Another question on Chemistry

question
Chemistry, 21.06.2019 19:00
Asmall amount of a solid is added to water. the observation made after fifteen minutes is shown in the figure. which of these solids has been probably added to water? a) oil b) sand c) sugar d) wood chips
Answers: 1
question
Chemistry, 22.06.2019 06:00
An atom of lithium (li) and an atom of chlorine (cl) engage in a chemical reaction. which correctly describes the structure of the resulting chemical compound? hint: consider the class of each element. the chemical compound will have a network structure. the chemical compound will have triple bonds. the chemical compound will have a ball-and-stick structure. the chemical compound will have double bonds.
Answers: 2
question
Chemistry, 22.06.2019 14:00
Displacement is the slope of a velocity vs. time graph a. true b. false
Answers: 1
question
Chemistry, 23.06.2019 01:30
What is produced from neutralization of an acid and a base? a. hydronium ions b. citric acid c. salt and water
Answers: 1
You know the right answer?
Part a background information; solution already calculate the change in enthalpy (δh) for 1.0 mol...
Questions