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Translational Diffusion: measuring the frictional force on the movement of a macromolecule in solution. A particle under the influence of a constant applied. - ppt download
![The diffusion coefficient of an ideal gas is proportional to its mean free path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is The diffusion coefficient of an ideal gas is proportional to its mean free path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is](https://s3.ap-south-1.amazonaws.com/byjus-media-delivery/videos/mpkgr-production-1dc4baff/rkg3cj/SQNA/3516/LAND_JEE_ENG/B5/20JEE11CHE05E06WXX/Batch_2/20JEE11CHE05E06W20/thumbs/97b3a892/480x360.jpg)
The diffusion coefficient of an ideal gas is proportional to its mean free path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is
![The diffusion coefficient of an ideal gas is proportional to its mean path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is increased The diffusion coefficient of an ideal gas is proportional to its mean path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is increased](https://haygot.s3.amazonaws.com/questions/1738279_1737495_ans_51be7d23b35f4af29f6a1efd2db2b7e0.png)
The diffusion coefficient of an ideal gas is proportional to its mean path and mean speed. The absolute temperature of an ideal gas is increased 4 times and its pressure is increased
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