Concept explainers
(a)
Interpretation:
Calculate the Henry’s law constant for CO2 from the given solubility coefficient.
Concept introduction:
According to Henry’s law, the amount of gas dissolved is proportional to its partial pressure. The proportionally constant is known as Henry’s law constant
(b)
Interpretation:
Calculate how many grams of CO2 can be dissolved in a 12-oz bottle of soda.
Concept introduction:
According to Henry’s law, the amount of gas dissolved is proportional to its partial pressure. The proportionally constant is known as Henry’s law constant
(c)
Interpretation:
Calculate the volume of dissolve CO2 occupy.
Concept introduction:
According to Henry’s law, the amount of gas dissolved is proportional to its partial pressure. The proportionally constant is known as Henry’s law constant

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Chapter 6 Solutions
ELEMENTARY PRINCIPLES OF CHEM. PROCESS.
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- Part I. a) Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone b) Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone (3,3-dimethyl-2-butanone) and 2, 3-dimethyl - 1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forward3. The explosive decomposition of 2 mole of TNT (2,4,6-trinitrotoluene) is shown below: Assume the C(s) is soot-basically atomic carbon (although it isn't actually atomic carbon in real life). 2 CH3 H NO2 NO2 3N2 (g)+7CO (g) + 5H₂O (g) + 7C (s) H a. Use bond dissociation energies to calculate how much AU is for this reaction in kJ/mol.arrow_forwardPart I. Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone and answer the ff: Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone and (3,3-dimethyl-2-butanone) 2,3-dimethyl-1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forward
- Show the mechanism for these reactionsarrow_forwardDraw the stepwise mechanismarrow_forwardDraw a structural formula of the principal product formed when benzonitrile is treated with each reagent. (a) H₂O (one equivalent), H₂SO₄, heat (b) H₂O (excess), H₂SO₄, heat (c) NaOH, H₂O, heat (d) LiAlH4, then H₂Oarrow_forward
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