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Let us now try and understand some of the useful techniques that students shall follow to prepare well for the upcoming Exams. To learn and revise the concepts, you shall attempt some of the quizzes or test papers available on the website or App. The introduction to Viscosity, its importance, laws, principles and ways to measure it, was explained in the above paragraphs.Īn important discipline of the Physics quotient as discussed above gives you a clear insight into which formulas are to be used when. When a layer of Liquid is subjected to move upon a surface or another layer of the same Liquid, the Fluid particles tend to oppose such movement this resisting force developed by a Liquid is called Viscosity. The principle of Viscosity is stated here: This helps in better lubrication preventing any wear and tear. The quality of lubricant matters and it should have a proper Viscosity and be a multi-grade like API and SN, supplied by some reputed firm.
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Oil is not always the right option for lubrication. If Viscosity is too low at high temperatures, it can't be used for Lubrication.Ī moderately viscous Fluid is required for lubrication purposes.
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If the Viscosity of a Fluid is too high at low temperatures, it cannot be pumped. Fast-moving Liquids like water have low Viscosity and slow-moving Liquids like honey have high Viscosity. Viscosity is the resistance produced in a Liquid to its flow. Viscosity is an essential feature of Liquids that are used for lubrication, like lubricating oils and grease. The generalized expression in coordinate-free form is provided by. Where \, which is a particular case of Fluid Viscosity. The force F acting on the Fluid particles is directly proportional to the Fluid velocity ‘u’ and the area ‘A’ of the layer and is inversely proportional to the distance ‘y’ between them.Īccording to Newton, the Viscosity formula is, In Fluids, the flow velocity varies linearly at different points, being 0 at the bottom, and a velocity ‘u’ at the top. Sir Isaac Newton has postulated some assumptions regarding the Fluid Viscosity. Let us consider a Liquid in which the Fluid particles move in a specific direction in straight parallel lines. This makes it difficult for a user to decide the instrument type while experimenting with accurate measurement. Many different types are available for Viscosity measurements simple ones involve counting of seconds as a Liquid drop from a stick, while complex instruments involve sophisticated automatic recordings. Selecting the right viscometer that suits your experiment is quite a difficult task. There are various methods to measure Viscosity, depending upon the type of materials used and the circumstances. This is the reason that Fluids with high Viscosity need more force to move as compared to those of low Viscosity. Shearing occurs when a Fluid moves or is distributed, like pouring, spraying, spreading, mixing, etc. More is the Friction more is the amount of force required to move the layers this is called shear. The internal forces or Friction of Fluid comes into play when one layer of Fluid is subjected to move over another layer. It is a measure of the internal forces of a Fluid. Determining the seminal viscosity with this rapid, objective and quantitative method is valuable in identifying and treating the subgroup of infertile men with viscid semen.Viscosity is the tendency of a Fluid to resist any change in its shape or Motion. It is concluded that seminal viscosity may be higher in cases of poor-quality semen however, sperm motility and concentration are not the sole determinants of viscosity. The seminal viscosity of the oligoasthenospermic group was significantly higher than that of the normospermic group (p < 0.01) there was also a trend towards higher viscosity in the semen of asthenospermia and oligospermia when compared with the normospermic group. Seminal viscosity showed a significant negative correlation with the percentage of motile sperm (p < 0.05) however, no significant correlation between seminal viscosity and sperm concentration could be found (r = -0.15, p = 0.098). The average seminal viscosity one hour after ejaculation was 9.35 +/- 0.99 centipoise (cps), which was statistically identical to that in the third hour (8.63 +/- 0.77 cps). The viscosity of 130 human seminal plasma samples was studied with a rotational viscometer instead of by the traditional subjective rating method.
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