The following plot shows the vapor pressure of various solutions of components A and B at some temperature. Which of the following statements is false concerning solutions of A and B? a. The solutions exhibit negative deviations from Raoult’s law. b. ∆ H so1n for the solutions should be exothermic. c. The intermolecular forces are stronger in solution than in either pure A or pure B. d. Pure liquid B is more volatile than pure liquid A. e. The solution with X B = 0.6 will have a lower boiling point than either pure A or pure B.
The following plot shows the vapor pressure of various solutions of components A and B at some temperature. Which of the following statements is false concerning solutions of A and B? a. The solutions exhibit negative deviations from Raoult’s law. b. ∆ H so1n for the solutions should be exothermic. c. The intermolecular forces are stronger in solution than in either pure A or pure B. d. Pure liquid B is more volatile than pure liquid A. e. The solution with X B = 0.6 will have a lower boiling point than either pure A or pure B.
Solution Summary: The author explains that Raoult's law for ideal solution states that the mole tion of the solvent is directly proportional to the vapor pressure of an ideal.
8. The emission spectrum below for a one-electron (hydrogen-like) species in the
gas phase shows all the lines, before they merge together, resulting from
transitions to the ground state from higher energy states. Line A has a
wavelength of 10.8 nm.
BA
Increasing wavelength, \ -
a) What are the upper and lower principal quantum numbers corresponding to
the lines labeled A and B?
b) Identify the one-electron species that exhibits the spectrum.
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Use retrosynthetic analysis to suggest two paths to synthesize 2-methyl-3-hexanol using the Grignard reaction. (Click and drag
the appropriate image to the correct position in the reactions.)
Route 1
Aldehyde 1
or
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Aldehyde 2
Route 2
Q6
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Q7
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Q8
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Grignard 1
OH
H3O+
Grignard 2
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Q9
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MgBr
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CH3CH2CH2MgBr
Q10
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2-methyl-3-hexanol
CH3CH2MgBr
H
H
о
H
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