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Bernouli's equation for a steady streaml...

Bernouli's equation for a steady streamline flow of a non-viscous incompressible fluid expresses the principle of

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For streamline flow of an incompressible fluid, If A is area and v is speed then equation of continuity is

Three points A,B ,and C on a steady flow of a non-viscon and inconpressible fluid are observed. The pressure, velocity and height of the point A, B and C are (2,3,1),(1,2,2) and (4,1,2) respectively.Density of the fluid is 1kgm^(-3) and all other parameters are given in SI unit. Then which of the following is correct?( g=10ms^(-2))

In case of the streamline flow of non-visocous and incompressible fluid, which of the following statemetn is CORRECT ?

Continuity equation is law of conservation of volume for incompressible fluid .

A: Bernoulli's theorem holds good only for non viscous and incompressible liquid. R: Bernoulli’s theorem is based on the conservation of energy

Ac cording to Bernoulli's theorem for the streamline flow of an ideal liquid, the sum of pressure energy/mass, kinetic energy/mass and potential energy /mass remains constant at every cross section, throughout the liquid flow. i.e., (P)/(rho) + (1)/(2)upsilon^2 + gh = cosntant, where the symbols have their usual meaning. Note that an ideal liquied is the one, which is perfectly incompressible, irrotational and non visous. Read the above passage and answer the following question ? (i) At what speed will the velocity head of a stream of water be equal to 40 cm ? (ii) What is the implication of Bernoulli's theorem in day to day life ?

Statement-1 : The stream of water flowing at high speed from a garden hose pipe tends to spread like a foundtion when held vertically up, but tends to narrow down when held vertically down. Statement-2 : In any steady flow of an incompressible fluid, the volume flow rate of the fluid remain constant.

Assertion: Bernoulli's equation hold for non-steady or turbulent flows. Reason: In these situations, velocity and pressure are constant with time.

SL ARORA-Mechanical Properties of fluids-Exercise
  1. Units of coefficient of viscosity are

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  2. Define terminal velocity and obtain an expression for the terminal vel...

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  3. Bernouli's equation for a steady streamline flow of a non-viscous inco...

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  4. State and prove Bernoulli's theorem.

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  5. A cylindrical vessel of uniform cross-section contains liquid upto the...

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  6. A liquid is in a streamline flow through a pipe of non-uniform cross-s...

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  7. Bernoulli's Equation

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  8. It is observed that during storm, the roof's of some houses are blown ...

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  9. Derive Stokes' law dimensionally.

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  10. Define surface tension and surface energy. Write units and dimensions ...

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  11. Show that there is always an excess pressure on the concave side of th...

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  12. A : The spiders and insects can run on the surface of water. R : Buoy...

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  13. The excess pressure inside a soap bubble is

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  14. Define the term surface energy. Write down its dimensional formula and...

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  15. A liquid drop of diameter D breaks up into 27 tiny drops. Find the res...

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  16. What is capillarity? Derive an expression for the height to which the ...

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  17. A balloon filled with helium does not rise in air indefinitely but hal...

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  18. Explain why (a). The angle of contact of mercury with galss is obtus...

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  19. Explain why (a). The angle of contact of mercury with galss is obtus...

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  20. Explain why (a). To keep a piece of paper horizontal, you should blo...

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