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A moving fluid mass may be brought to a static equilibrium position by applying an imaginary inertia force of the same magnitude as that of the accelerating force but in the opposite direction. This statement is called
  • a)
    Pascal’s law
  • b)
    Archimedes’ principle
  • c)
    D’Alembert’s principle
  • d)
    None of these
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
A moving fluid mass may be brought to a static equilibrium position b...
Newton's second law:
F = ma
F + (-ma) = 0
We can say that the body is in equilibrium under the action of external forces (F) and inertial force (-ma).
This is D’Alembert’s principle which states that a moving body can be brought to equilibrium by adding inertia force Fi to the system.
In magnitude, this inertia force is equal to the product of mass and acceleration and takes place in a direction opposite to that of acceleration.
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A moving fluid mass may be brought to a static equilibrium position by applying an imaginary inertia force of the same magnitude as that of the accelerating force but in the opposite direction. This statement is calleda)Pascal’s lawb)Archimedes’ principlec)D’Alembert’s principled)None of theseCorrect answer is option 'C'. Can you explain this answer?
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