Sulfur – yellow powder with a strong and somewhat unpleasant odor has anti-inflammatory, astringent, detoxifying and disinfectant properties. In addition to these - benefits, sulfur has been used to treat skin problems for a long time and remains a valuable ingredient in skin care products, especially soaps. The determination of the sulfur concentration in a soap sample was performed by burning 3.130 mg of crushed sample producing an amount of SO3. The SO3 produced was collected in water and completely converted to H2SO4. The acid formed was titrated with a 0.01530 mol L^-1 NaOH solution using 2.15 mL. Calculate the % (w/w) of S in the soap sample. Data: O = 16.00 S= 32.07 H = 1.008
Sulfur – yellow powder with a strong and somewhat unpleasant odor has anti-inflammatory, astringent, detoxifying and disinfectant properties. In addition to these - benefits, sulfur has been used to treat skin problems for a long time and remains a valuable ingredient in skin care products, especially soaps. The determination of the sulfur concentration in a soap sample was performed by burning 3.130 mg of crushed sample producing an amount of SO3. The SO3 produced was collected in water and completely converted to H2SO4. The acid formed was titrated with a 0.01530 mol L^-1 NaOH solution using 2.15 mL. Calculate the % (w/w) of S in the soap sample. Data: O = 16.00 S= 32.07 H = 1.008
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:3 -
Sulfur – yellow powder with a strong and
somewhat unpleasant odor has
anti-inflammatory, astringent, detoxifying and
disinfectant properties. In addition to these
benefits, sulfur has been used to treat skin
problems for a long time and remains a
valuable ingredient in skin care products,
especially soaps. The determination of the
sulfur concentration in a soap sample was
performed by burning 3.130 mg of crushed
sample producing an amount of SO3. The SO3
produced was collected in water and
completely converted to H2SO4. The acid
formed was titrated with a 0.01530 mol L^-1
NaOH solution using 2.15 mL. Calculate the %
(w/w) of S in the soap sample.
Data:
O = 16.00
S= 32.07
H = 1.008
%3D
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