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For streamline motion of an incompressible non-viscous fluid, is states by Bernoulli’s principle ____.
  • a)
    the pressure at any part + the kinetic energy per unit volume = constant 
  • b)
    the kinetic energy per unit volume + the potential energy per unit volume = constant 
  • c)
    the pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constant
  • d)
    the pressure at any part + the potential energy per unit volume = constant 
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
For streamline motion of an incompressible non-viscous fluid, is state...
Bernoulli's equation states that for an incompressible and inviscid fluid, the total mechanical energy of the fluid is constant. (An inviscid fluid is assumed to be an ideal fluid with no viscosity. )
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For streamline motion of an incompressible non-viscous fluid, is state...
Explanation:

Bernoulli's Principle:
Bernoulli's principle states that for the streamline motion of an incompressible non-viscous fluid, the total mechanical energy per unit volume remains constant along a streamline.

Components of Total Mechanical Energy:
- The pressure energy per unit volume
- The kinetic energy per unit volume
- The potential energy per unit volume

Mathematical Representation:
The Bernoulli's equation can be represented as:
Pressure energy per unit volume + Kinetic energy per unit volume + Potential energy per unit volume = Constant

Correct Answer:
Therefore, the correct statement as per Bernoulli's principle is:
c) The pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constant
This equation signifies the conservation of mechanical energy in the flow of an incompressible non-viscous fluid along a streamline.
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For streamline motion of an incompressible non-viscous fluid, is states by Bernoulli’s principle ____.a)the pressure at any part + the kinetic energy per unit volume = constantb)the kinetic energy per unit volume + the potential energy per unit volume = constantc)the pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constantd)the pressure at any part + the potential energy per unit volume = constantCorrect answer is option 'C'. Can you explain this answer?
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For streamline motion of an incompressible non-viscous fluid, is states by Bernoulli’s principle ____.a)the pressure at any part + the kinetic energy per unit volume = constantb)the kinetic energy per unit volume + the potential energy per unit volume = constantc)the pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constantd)the pressure at any part + the potential energy per unit volume = constantCorrect answer is option 'C'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared according to the GATE exam syllabus. Information about For streamline motion of an incompressible non-viscous fluid, is states by Bernoulli’s principle ____.a)the pressure at any part + the kinetic energy per unit volume = constantb)the kinetic energy per unit volume + the potential energy per unit volume = constantc)the pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constantd)the pressure at any part + the potential energy per unit volume = constantCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for GATE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for For streamline motion of an incompressible non-viscous fluid, is states by Bernoulli’s principle ____.a)the pressure at any part + the kinetic energy per unit volume = constantb)the kinetic energy per unit volume + the potential energy per unit volume = constantc)the pressure at any part + the kinetic energy per unit volume + the potential energy per unit volume = constantd)the pressure at any part + the potential energy per unit volume = constantCorrect answer is option 'C'. Can you explain this answer?.
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