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MU (Mumbai University) Term Test - II Important Questions for Mechanical Semester 4

Break your syllabus into small parts and set daily goals. Use simple notes or flowcharts to revise quickly. Don’t skip solving PYQs – they give a clear idea of the paper pattern

IMPS for KOM


  1. What is the instantaneous centre of rotation? How do you find the number of instantaneous centres in a mechanism? 

  2. What are the different types of instantaneous centres?

  3. Explain successfully constrained motion with sketches of examples

  4.  State and derive the law of gearing.

  5. Differentiate between involute and cycloidal gear tooth profiles. OR Compare involute and cycloidal gear teeth profiles

  6. What are the different types of constrained motion? 

  7. State and prove Kennedy’s Theorem

  8. Derive the expression for open belt drive.

  9. Derive the equation for centrifugal tension

  10. State work energy principle


IMPS for IE


  1. Draw and explain astable mode of operation of IC 555.

  2. Draw and explain the Instrumentation amplifier State its advantages and disadvantages.

  3. Draw and explain MSP430 architecture.

  4. Give an overview of a generic microprocessor. 

  5. Explain the BLDC motor. State its advantages.

  6. What is MOSFET? Explain its working.What are the similarities between MOSFET AND IGBT?

  7. Draw and explain V-I characteristics of SCR.

  8. Explain UJT triggering method of SCR in brief with circuit diagram. 

  9. Compare DIAC, SCR and TRAIC.  

  10. With neat circuit diagrams and waveforms, explain single phase full wave half controlled rectifier circuits supplying a resistive load. 


IMPS for FM


  1.  What are the properties of Newtonian and non-Newtonian fluids? OR Explain Newtonian and non-Newtonian Fluids

  2. Define stream function and velocity potential function.

  3. In a two-dimensional incompressible flow, the fluid velocity components are given by u = x - 4y and v = - y - 4x. Show that velocity potential exists and determine its form as well as stream function. 

  4. What is venturimeter? Derive expression of discharge through venturimeter.

  5. What is Reynolds transport theorem? What purpose does it serve?

  6. How do you determination of head loss in pipes due to friction.

  7. What is Pascal’s Law and Archimedes Principle?

  8. Write short notes on types of fluids.

  9. Write a short note on Buckingham’s 𝝅 theorem

  10. Determine the flow rate through the Venturimeter shown in figure (𝛄=ρg )


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