Using only the data given below, determine Δ G ° for the following reaction: NO ( g ) + O ( g ) → NO 2 ( g ) (Remember that Δ G is a state function, just like Δ H .) 2O 3 ( g ) → 3O 2 ( g ) Δ G ° = - 326 kJ O 2 ( g ) → 2O ( g ) Δ G ° = 463.6 kJ NO ( g ) + O 3 ( g ) → NO 2 ( g ) + O 2 ( g ) Δ G ° = -198.3 kJ
Using only the data given below, determine Δ G ° for the following reaction: NO ( g ) + O ( g ) → NO 2 ( g ) (Remember that Δ G is a state function, just like Δ H .) 2O 3 ( g ) → 3O 2 ( g ) Δ G ° = - 326 kJ O 2 ( g ) → 2O ( g ) Δ G ° = 463.6 kJ NO ( g ) + O 3 ( g ) → NO 2 ( g ) + O 2 ( g ) Δ G ° = -198.3 kJ
Solution Summary: The author calculates the G o of the given reaction by reversing the equation and dividing the coefficients by 2: O(g) and 12 O (g).
5. Compressibility (6 points total). The isothermal compressibility is a measure of how
hard/easy it is to compress an object (how squishy is it?) at constant temperature. It is
др
defined as Br=-()=-(200²)T'
(a) You might wonder why there is a negative sign in this formula. What does it mean when
this quantity is positive and what does it mean when this quantity is negative?
(b) Derive the formula for the isothermal compressibility of an ideal gas (it is very simple!)
(c) Explain under what conditions for the ideal gas the compressibility is higher or lower,
and why that makes sense.
19. (3 pts) in Chapter 7 we will see a reaction of halocyclohexanes that requires that the halogen occupy an axial position with
this in mind, would you expect cis-1-bromo-3-methylcyclohexane or trans-1-bromo-3-methylcyclohexane to be more
reactive in this reaction? Briefly explain your choice using structures to support your answer.
Mere-eries-cecleone)
The tran-i-browse-3-methylcyclohexione
Please help me calculate the undiluted samples ppm concentration.
My calculations were 280.11 ppm. Please see if I did my math correctly using the following standard curve.
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Chapter 10 Solutions
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