04. a). A control volume is an arbitrary volume of space through which fluid can flow. Let the control volume of a spher

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04. a). A control volume is an arbitrary volume of space through which fluid can flow. Let the control volume of a spher

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04. a). A control volume is an arbitrary volume of space throughwhich fluid can flow. Let the control volume of a spherical shapedblob in a flowing fluid is 𝑉. Suppose the fluid has density 𝜌(π‘Ÿ,𝑑)and velocity field 𝑒. Then applying mass conservation to theblob,
Rate of change of mass in = βˆ’ Mass out flow.
The total mass of fluid entering to the blob in a control volume𝑉 is
π‘š = ∭𝜌 𝑉 𝑑𝑉.
The mass out flow is given by,
∬(πœŒπ‘’) 𝑆 𝑑𝑆
where, 𝑆 is the surface bounded by the control volume 𝑉. Applythe Gauss Divergence Theorem to show that,
πœ•πœŒ πœ•π‘‘ + βˆ‡ β‹… (πœŒπ‘’) = 0
b). Let the rate of change of 𝑁 is given by,
𝑑𝑁 𝑑𝑑 = πœ• πœ•π‘‘ ∫ πœ‡πœŒ 𝑉 𝑑𝑉 + ∫ πœ‡πœŒπ‘’ 𝑆 𝑑𝑆.
Newton’s Second Law for a system in an inertial frame is, 𝑑𝑃 𝑑𝑑 = 𝐹.
where 𝑃 is the linear momentum and 𝐹 be the total force of thesystem.
Suppose a spherical shaped arbitrary fluid drop with radius π‘Ž isfalling from a fluid container which is above the ground level.Let,
πœ‡ = 𝑒 = π‘Ÿ 2π‘’π‘Ÿ and 𝜌(𝑑, π‘Ÿ) = 𝑑 3 .
Hence find the total force on the fluid drop at 𝑑 = 2.
Here, π‘Ÿ is the radius of the fluid drop and π‘’π‘Ÿ be theperpendicular unit vector to the surface of a sphere. State everyassumption that you made to provide the answer.
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