
Concept explainers
(a)
Interpretation:
The equation for the straight line using the given data has to be written.
Concept Introduction:
Clausius-Clapeyron equation:
From this relationship we can calculate the molar enthalpy of vaporization by knowing the corresponding temperature and pressure values.
If we have pressures at two different temperatures, then enthalpy of vaporization can be calculated by
Boiling point of a liquid: The temperature at which external pressure and vapour pressure of the liquid become same.
Normal boiling point: When the external pressure is
(a)

Answer to Problem 66SCQ
The equation for straight line is
Explanation of Solution
Given:
2.30 | 0.00369 |
3.69 | 0.00342 |
4.61 | 0.00325 |
5.99 | 0.00297 |
6.63 | 0.00285 |
From the given data we can derive the equation for straight line
In the given graph
(b)
Interpretation:
The way by which enthalpy of vaporization can be calculated using the graph has to be given.
Concept Introduction:
Clausius-Clapeyron equation:
From this relationship we can calculate the molar enthalpy of vaporization by knowing the corresponding temperature and pressure values.
If we have pressures at two different temperatures, then enthalpy of vaporization can be calculated by
Boiling point of a liquid: The temperature at which external pressure and vapour pressure of the liquid become same.
Normal boiling point: When the external pressure is
(b)

Answer to Problem 66SCQ
The explanation for determining enthalpy of vaporization from the graph is given.
Explanation of Solution
Given:
Temperature | Vapour Pressure |
287 | 1 |
326.8 | 10 |
357.3 | 40 |
381.3 | 100 |
424.4 | 400 |
Using the data given we get a straight line graph and it satisfies the straight line equation
In the graph the y axis have
The equation corresponding to the straight line in the graph is
From the slope of the graph we can calculate the molar enthalpy of vaporization.
From the graph drawn,
Thus from the graph we can calculate the slope and using the equation
(c)
Interpretation:
The vapour pressure of ethanol at
Concept Introduction:
Clausius-Clapeyron equation:
From this relationship we can calculate the molar enthalpy of vaporization by knowing the corresponding temperature and pressure values.
If we have pressures at two different temperatures, then enthalpy of vaporization can be calculated by
Boiling point of a liquid: The temperature at which external pressure and vapour pressure of the liquid become same.
Normal boiling point: When the external pressure is
(c)

Answer to Problem 66SCQ
The vapour pressure of ethanol at
Explanation of Solution
We know the equation of the line. Substituting the given temperatures in this equation, we can calculate the vapour pressures.
Vapour pressure at
Vapour pressure at
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Chapter 11 Solutions
CHEMISTRY+CHEM...HYBRID ED.(LL)>CUSTOM<
- on x Fina X Sign X Sign x lab X Intro X Cop X chat X My x Grac x Laur x Laur x ashes x S Shox S SHE x a eve.macmillanlearning.com/ihub/assessment/f188d950-dd73-11e0-9572-0800200c9a66/d591b3f2-d5f7-4983-843c-0d00c1c0340b/f2b47861-07c4-4d1b-a1ee-e7db27d6b4ee?actualCourseld=d591b3f2-c stions estion. ct each urces. +95 Macmillan Learning Draw the product formed by the reaction of potassium t-butoxide with (15,25)-1-bromo-2-methyl-1-phenylbutane (shown). Clearly show the stereochemistry of the product. H BH (CH3)3CO-K+ +100 H3CW (CH3)3COH +85 H3CH2C +95 ossible ↓ Q Search Select Draw Templates More C H 0 bp A Erase 2Q 112 Resouarrow_forwardIdentify the structure of the PTH derivative generated after two rounds of Edman degradation.arrow_forwardUse the data below from an electron impact mass spectrum of a pure compound to deduce its structure. Draw your structure in the drawing window. Data selected from the NIST WebBook, https://webbook.nist.gov/chemistry/ m/z Relative intensity 31 0.5 30 26 29 22 28 100 27 33 26 23 15 4 • You do not have to consider stereochemistry. You do not have to explicitly draw H atoms. • In cases where there is more than one answer, just draw one. 妊 n ? Previous Nextarrow_forward
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- Use the data below from an electron impact mass spectrum of a pure compound to deduce its structure. Draw your structure in the drawing window. Data selected from the NIST WebBook, https://webbook.nist.gov/chemistry/ m/z Relative intensity 59 3.0 58 64 43 100 15 23 • You do not have to consider stereochemistry. •You do not have to explicitly draw H atoms. • In cases where there is more than one answer, just draw one. + n[] 85 // ? CH4 Previous Nextarrow_forwardWrite the molecular formula for a compound with the possible elements C, H, N and O that exhibits a molecular ion at M* = 128.0632. Exact Masses of the Most Abundant Isotope of Selected Elements Isotope Natural abundance (%) Exact mass 1H 99.985 12C 98.90 14N 99.63 160 99.76 Molecular formula 1.008 12.000 14.003 15.995 (In the order CHNO, with no subscripts)arrow_forwardCan I please get help with this? And can I please the lowest possible significant number?arrow_forward
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