Calculate the followings. (50 drops/mL. 10 drops/monolayer, Inner Diameter of Petri dish - 14.00 cm, a' = 1.50 cm, d' = 0.50 cm, L' = 8.55 cm, [stearic acid] = 1.42 x 10 g/mL, dearic acid - 0.9408 g/mL) A Volume of stearic acid solution required to form a monolayer B. Length of a stearic acid molecule, assuming a linear conformation, in both cm and angstrom units. C. Diameter of a single carbon atom in cm and angstrom units.

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Calculate the followings. (50 drops/mL. 10 drops/monolayer, Inner Diameter of Petri dish =
14.00 cm, a' = 1.50 cm, d' = 0.50 cm, L' = 8.55 cm, [stearic acid] = 1.42 x 10 g/mL, dtearic
%3!
%3D
%3D
acid - 0.9408 g/mL)
A. Volume of stearic acid solution required to form a monolayer
B. Length of a stearic acid molecule, assuming a linear conformation, in both cm and
angstrom units,
C. Diameter of a single carbon atom in cm and angstrom units.
D. Thickness of a hydrocarbon chain using the scale model.
E. Area of the monolayer surface.
Transcribed Image Text:Calculate the followings. (50 drops/mL. 10 drops/monolayer, Inner Diameter of Petri dish = 14.00 cm, a' = 1.50 cm, d' = 0.50 cm, L' = 8.55 cm, [stearic acid] = 1.42 x 10 g/mL, dtearic %3! %3D %3D acid - 0.9408 g/mL) A. Volume of stearic acid solution required to form a monolayer B. Length of a stearic acid molecule, assuming a linear conformation, in both cm and angstrom units, C. Diameter of a single carbon atom in cm and angstrom units. D. Thickness of a hydrocarbon chain using the scale model. E. Area of the monolayer surface.
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