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Theory & Procedure, Viscosity of a liquid - Stokes method | Additional Study Material for NEET PDF Download

Objective

To determine the coefficient of viscosity of a given viscous liquid by measuring terminal velocity of a given spherical body.

Theory

How do you define viscosity?

Viscosity is the property of a fluid by virtue of which an internal resistance comes into play when the liquid is in motion, and opposes the relative motion between its different layers. Thus, it is the resistance of a fluid to flow.

When liquid flows over flat surface, a backward viscous force acts tangentially to every layer. This force depends upon the area of the layer, velocity of the layer, and the distance of the layer from the surface. 

Theory & Procedure, Viscosity of a liquid - Stokes method | Additional Study Material for NEET

Theory & Procedure, Viscosity of a liquid - Stokes method | Additional Study Material for NEET

Where η is the coefficient of viscosity of the liquid.

Stoke’s Law

Stoke’s law was established by an English scientist Sir George G Stokes (1819-1903). 

When a spherical body moves down through an infinite column of highly viscous liquid, it drags the layer of the liquid in contact with it. As a result, the body experiences a retarding force. 

Then according to Stokes law, the viscous drag force, 

Theory & Procedure, Viscosity of a liquid - Stokes method | Additional Study Material for NEET ,

where,  r - Radius of the spherical body

v - Velocity of the spherical body 

It gives the relationship between retarding force and velocity. When viscous force plus buoyant force becomes equal to force due to gravity, the net force becomes zero. The sphere then descends with a constant terminal velocity (v t).

Now,
Theory & Procedure, Viscosity of a liquid - Stokes method | Additional Study Material for NEET
where,  
ρ - Density of the liquid
σ - Density of the spherical body    

Learning Outcomes

  • Students understand the behavior and properties of fluids
  • Students get the knowledge about viscosity of liquids.
  • Students understand the quantity, coefficient of viscosity and the various factors affecting its value.
  • Students get the concept of terminal velocity.

Materials Required

  • A long cylindrical glass jar
  • Transparent viscous fluid
  • Metre scale
  • Spherical ball
  • Screw gauge
  • Vernier calipers
  • Stop clock
  • Thread
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FAQs on Theory & Procedure, Viscosity of a liquid - Stokes method - Additional Study Material for NEET

1. What is the Stokes method for measuring the viscosity of a liquid?
Ans. The Stokes method is a technique used to measure the viscosity of a liquid. It involves observing the motion of a small spherical object, usually a ball or a bead, as it falls through the liquid under the influence of gravity. The speed at which the object falls is related to the viscosity of the liquid.
2. How does the Stokes method work to measure viscosity?
Ans. In the Stokes method, a small spherical object is released into a liquid and allowed to fall under the influence of gravity. As the object falls, it experiences a drag force due to the viscosity of the liquid. The drag force depends on the size, shape, and velocity of the object, as well as the viscosity of the liquid. By measuring the velocity of the object as it falls through the liquid, the viscosity of the liquid can be determined using the Stokes equation.
3. What are the advantages of using the Stokes method for viscosity measurement?
Ans. The Stokes method offers several advantages for viscosity measurement. Firstly, it is a simple and straightforward technique that requires minimal equipment. Secondly, it can be used for a wide range of liquids, including both Newtonian and non-Newtonian fluids. Additionally, the Stokes method provides accurate and reliable results when the conditions of the experiment are well-controlled.
4. Are there any limitations or drawbacks to using the Stokes method for viscosity measurement?
Ans. While the Stokes method is a widely used technique for viscosity measurement, it does have some limitations. One limitation is that it assumes the liquid is homogeneous and does not take into account any variations in viscosity within the liquid. Additionally, the method assumes laminar flow conditions, which may not be applicable for highly viscous or turbulent fluids. Lastly, the Stokes method may not be suitable for measuring the viscosity of complex fluids with non-Newtonian behavior.
5. How can the viscosity measurement using the Stokes method be affected by experimental factors?
Ans. Several experimental factors can affect the accuracy of viscosity measurement using the Stokes method. These factors include the temperature of the liquid, which can influence its viscosity, the size and shape of the spherical object used, and the precision of the timing and distance measurements. It is important to carefully control these factors and account for any potential sources of error to ensure accurate viscosity measurements using the Stokes method.
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