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Product description
1. Using a nephelometer, the turbidity of two hydrasols of mastics of equal concentrations was compared. The turbidity of the determined and standard sols became the same at the heights of the illuminated parts of the first sol
h 1 = 5⋅10 -3 m and the second sol h 2 = 19,0⋅10 -3 m, respectively. Average radius
particles of the standard sol r 1 = 120⋅10 -9 m. Determine the radius of the particles of the second
sol.
h 1 = 5⋅10 -3 m and the second sol h 2 = 19,0⋅10 -3 m, respectively. Average radius
particles of the standard sol r 1 = 120⋅10 -9 m. Determine the radius of the particles of the second
sol.
Main features
- Content type File
- Content description 11,18 kB
- Added to the site 18.04.2018
Additional description
If you do not open the file - install the RAR archiver. Inside the archive you will find a solution in Word format.
Questions and problems from the manual:
"Laboratory Workshop on Colloid Chemistry" Nekrasov AP, Veretenchenko BA, Kharkov NTU "KhPI", 2004
"Characteristic properties of disperse systems" Nekrasov AP, Kharkov, 1996
Tasks are executed in Microsoft Word, graphics - in Microsoft Exel or OriginPro; formulas are typed in the MathType editor (if the formulas contain unreadable characters, then you need to install this editor); files are archived by WinRAR.
Questions and problems from the manual:
"Laboratory Workshop on Colloid Chemistry" Nekrasov AP, Veretenchenko BA, Kharkov NTU "KhPI", 2004
"Characteristic properties of disperse systems" Nekrasov AP, Kharkov, 1996
Tasks are executed in Microsoft Word, graphics - in Microsoft Exel or OriginPro; formulas are typed in the MathType editor (if the formulas contain unreadable characters, then you need to install this editor); files are archived by WinRAR.
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