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14 Construct a gauge Geller curve in coordinates α = f (d) for particles of polystyrene latex:
d, nm 77.0 88.0 95.0 106.7 111.0 119.0 132.0 139.0
α 3.82 3.64 3.54 3.30 3.23 3.04 2.82 2.72
Determine the average radius of particles of polystyrene latex, based on the following experimental data:
The wavelength λ, nm 415 485 527 685
Optical density D 0.195 0.127 0.099 0.048
d, nm 77.0 88.0 95.0 106.7 111.0 119.0 132.0 139.0
α 3.82 3.64 3.54 3.30 3.23 3.04 2.82 2.72
Determine the average radius of particles of polystyrene latex, based on the following experimental data:
The wavelength λ, nm 415 485 527 685
Optical density D 0.195 0.127 0.099 0.048
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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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