Semesters: 2021-2022-I, 2022-2023-I, 2026-2027-I
# Chapter Additional Reading
1 Introduction --
2 Fluid flow kinematics --
3 Dynamical laws of motion --
4 Hydrostatics --
5 Differential analysis --
6 Integral analysis --
7 Dimensional analysis and similitude --
8 Stokes' flows and potential flows --
9 Boundary layer theory --
10 Internal and external incompressible flows --
11 Turbomachinery and compressible flows --

Tutorial Sheets

# Sheet Name Additional Problems / Sources
1 Vector calculus, index notation, tensor algebra and calculus Solutions (2,4,5,6,7,8) , Solutions (rest)
2 Flow kinematics and visualization Solutions
Flow visualization video
3 Dynamical laws and viscometry Solutions (1,2,3,4,5)
4 Hydrostatics and Surface tension Solutions
5 Differential analysis Solutions (1,2,5,7) Solutions (3,4,6,8)
6 Integral analysis --
7 Dimensional analysis and similitude --
8 Stokes' flows and potential flows --
9 Boundary layer theory --
10 Internal and external flows --
11 Turbomachinery and compressible flows --

Exams/Quizzes

# Exam Solutions
1 Quiz-1 Quiz-1 solutions
2 Quiz-2 Quiz-2 solutions
3 Quiz-3 Quiz-3 solutions
4 Midsem Midsem solutions
5 Quiz-4 --
6 Quiz-5 --
9 Endsem Endsem solutions

General exam instructions

  • Reach on time.
  • You are allowed one A4 size sheet with whatever formulae/derivations you want to write. This applies to all exams and quizzes.
  • You are NOT ALLOWED ANY CHEAT SHEETS (Effective after midterm exam)
  • Bring your valid student IDs (hard copy).
  • No electronic devices (phones, smartwatches etc) are allowed.
  • There is no sharing allowed (pens, sheets, calculators, etc).

References

  1. Frank, M. "White," Fluid Mechanics", McGraw Hill." (2017).
  2. Pritchard, Philip J. "Fox and McDonald's introduction to fluid mechanics." (2011).
  3. Currie, Iain G., and I. G. Currie. Fundamental mechanics of fluids. CRC press, 2002.
  4. Panton, R. L. Incompressible flow. John Wiley & Sons.
  5. Cohen, Ira M., and Pijush K. Kundu. Fluid mechanics. Elsevier, 2004.
  6. White, Frank M., and Joseph Majdalani. Viscous fluid flow. Vol. 3. New York: McGraw-Hill, 2006.
  7. Aris, R.. Vectors, tensors and the basic equations of fluid mechanics. Courier Corporation.
  8. Fluid Mechanics Films by NCFMF, 1961
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