Question

For an irrotational flow, the following equation is given by

a.

Cauchy-Riemann

b.

Reynold

c.

Laplaces

d.

Bernoulli

Answer: (c).Laplaces

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. For an irrotational flow, the following equation is given by

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. Chezy's constant given by following equation is suggested by

Q. The discharge through a V-notch weir varies as

Q. If L, D and f are the length, diameter and coefficient of friction of a pipe, the ratio of the areas of the pipe A and nozzle a, to transmit maximum power, is

Q. The pressure variation along the radial direction for vortex flow along a horizontal plane is related by

Q. The minimum specific energy of flow of water in open channel is : (where hc is the critical depth)

Q. Specific energy of a flowing fluid per unit weight is

Q. Discharge with velocity of approach, over a rectangular weir is

Q. The detention time of a circular tank of diameter d and water depth H, for receiving the sewage Q per hour, is

Q. Pick up the correct statement regarding Borda's mouth piece running full from the following :

Q. Differential manometers are used to measure

Q. A tank 4m x 3m x 2m containing an oil of specific gravity 0.83 is moved with an acceleration g/2 m sec². The ratio of the pressures at its bottom when it is moving vertically up and down, is

Q. Highest dam in India, is

Q. A short tube mouthpiece will not run full at its outlet if the head under which the orifice works, is

Q. Hydrostatic pressure on a dam depends upon its

Q. A pitot tube is used to measure

Q. The thickness of a sharp crested weir is kept less than

Q. The property of steam function ψ is :

Q. The maximum vacuum created at the summit of a syphon is

Q. If the atmospheric pressure on the surface of an oil tank (sp. gr. 0.8) is 0.1 kg/cm², the pressure at a depth of 2.5 m, is

Q. A pipe of 0.1 m² cross sectional area suddenly enlarges to 0.3 m² cross-sectional area. If the discharge of the pipe is 0.3 m³ /sec, the head loss is

Recommended Subjects

Are you eager to expand your knowledge beyond Civil Engineering? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!