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Bernoulli's Principle

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A pump and its horizontal intake pipe are located 12 m beneath the surface of a reservoir . The speed of the water in the intake pipe causes the pressure there to decrease , in accord with Bernoulli's principle . What is the maximum speed with which water can flow through the intake pipe (assuming non-viscous flow ) ?

Statement 1 : If P is the pressure of gas inside the exhaust chamber of a rocket and P_(0) is the pressure of the gas outside the chamber. The forward thrust on the rocket is 2a (P- P_(0)) insteady of a (P-P_(0)) where a is the area of orifice. Statement -2: The formula thrust = a(P - P_(0)) holds good for fluids at rest. In the case of rocket the flurids are in motion and we have to use Bernoulli's principle for calculating the thrust.

Find in the blanks using the word (s) from the test appended with each statement. (a) Surface tension of liquid generally …..with temperatures (increase//decreases). (b) Viscosity of gases ….. With temperature, whereas viscosity of liquids ……with temperature. (increases//decreases)/ (c) For solids with elastic modulus of rigidity, the shearing force is proportional to .....while for fluids it is proportional to ....(shear strain//rate of shear strain). (d) For a dluid in a steady flow, from .....(conservation of mass// Bernoulli's principle) (e ) For the model of a plane in a wind tunnel, turbulence oc curs at a ...... speed for turbulence for an actual plane (greater//smaller)/

Wind blowing horizontally over a paper makes it fly away. This can be explained on the basis of Bernoullis principle.

Bernoulli's principal (or equation) is a consquence of

Theorems on 3 events || Bernoulli's trials || Baye's theorem

Binomial Distribution (द्विपद वितरण)|Bernoulli's Trails (बर्नौली की पगडंडियाँ)|Questions (प्रश्न)|OMR

Application OF Fluid Bernoulli's theorem

Bernoulli's theorem