Physics

Fluid Mechanics

637 Questions

Fluid mechanics is a core physics topic that evaluates the principles of liquid pressure, buoyancy, density, and viscosity through complex numerical problems. The questions require calculating the volume of submerged objects, understanding hydraulic jumps, and applying fundamental fluid statics principles. It is a highly scoring subject for candidates preparing for technical and engineering competitive exams.

Liquid pressure and depthBuoyancy and densityVolume expansionHydraulic jump calculationsSurface tension mechanics

Fluid Mechanics Questions

Multiple choice
  1. Because a sphere has the least surface area for a given volume.

  2. Because a sphere has the largest surface area for a given volume.

  3. Because intermolecular forces are strong in liquids.

  4. Because intermolecular forces are weak in liquids.

Reveal answer Fill a bubble to check yourself
A Correct answer
Explanation

Surface tension causes liquids to minimize their surface area. For a given volume, a sphere has the smallest surface area of any geometric shape.

Multiple choice
  1. hydrogen bonding in water

  2. tetrahedral structure in water

  3. surface tension in water

  4. viscosity of water

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

Surface tension is the property of a liquid surface that allows it to resist an external force, caused by the cohesive forces between liquid molecules. This causes water droplets to minimize their surface area, resulting in a spherical shape.

Multiple choice
  1. the air pressure inside the bottle is same as that at the mouth

  2. the air pressure inside the bottle is more than that at the mouth

  3. the air pressure inside the bottle is less than that at the mouth

  4. the pressure inside and outside the bottle same

Reveal answer Fill a bubble to check yourself
B Correct answer
Explanation

the air pressure inside the bottle is more than that at the mouth

Multiple choice

What is the significance of a dark zone that Newton noticed?

Directions: Read the following passage and answer the question based on the passage.

The first observers who noticed that the volume of a body could be diminished by compression or cold, or augmented by heat, and who saw a soluble solid body mix completely with the water which dissolved it, must have been compelled to suppose that matter was not dispersed continuously throughout the space it seemed to occupy. They were thus brought to consider it discontinuous, and to admit that a substance having the same composition and the same properties in all its parts – in a word, perfectly homogeneous - ceases to present this homogeneity when considered within a sufficiently small volume.

Modern experimenters have succeeded by direct experiments in placing in evidence this heterogeneous character of matter when taken in small mass. Thus, for example, the superficial tension, which is constant for the same liquid at a given temperature, no longer has the same value when the thickness of the layer of liquid becomes extremely small. Newton noticed that a dark zone is seen to form on a soap bubble at the moment when it becomes so thin that it must burst. Professor Reinold and Sir Arthur Rücker have shown that this zone is no longer exactly spherical; and from this we must conclude that the superficial tension, constant for all thicknesses above a certain limit, commences to vary when the thickness falls below a critical value, which these authors estimate, on optical grounds, at about fifty millionths of a millimetre.

From experiments on capillarity, Prof. Quincke has obtained similar results with regard to layers of solids. But it is not only capillary properties which allow this characteristic to be revealed. All the properties of a body are modified when taken in small mass; M. Meslin proves this in a very ingenious way as regards optical properties, and Mr Vincent in respect of electric conductivity. M. Houllevigue, who, in a chapter of his excellent work, Du Laboratoire à l'Usine, has very clearly set forth the most interesting considerations on atomic hypotheses, has recently demonstrated that copper and silver cease to combine with iodine as soon as they are present in a thickness of less than thirty millionths of a millimetre. It is this same dimension likewise that is possessed, according to M. Wiener, by the smallest thicknesses it is possible to deposit on glass. These layers are so thin that they cannot be perceived, but their presence is revealed by a change in the properties of the light reflected by them.

Thus, below fifty to thirty millionths of a millimetre the properties of matter depend on its thickness. There are then, no doubt, only a few molecules to be met with and it may be concluded, in consequence, that the discontinuous elements of bodies - that is, the molecules - have linear dimensions of the order of magnitude of the millionth of a millimetre. Considerations regarding more complex phenomena, for instance the phenomena of electricity by contact, and also the kinetic theory of gases, bring us to the same conclusion.

The idea of the discontinuity of matter forces itself upon us for many other reasons. All modern chemistry is founded on this principle; and laws like the law of multiple proportions, introduce an evident discontinuity to which we find analogies in the law of electrolysis. The elements of bodies we are thus brought to regard might, as regards solids at all events, be considered as immobile; but this immobility could not explain the phenomena of heat, and, as it is entirely inadmissible for gases, it seems very improbable it can absolutely occur in any state. We are thus led to suppose that these elements are animated by very complicated movements, each one proceeding in closed trajectories in which the least variations of temperature or pressure cause modifications.

The atomistic hypothesis shows itself remarkably fecund in the study of phenomena produced in gases, and here the mutual independence of the particles renders the question relatively more simple and, perhaps, allows the principles of mechanics to be more certainly extended to the movements of molecules.

 

  1. It signified that when matter thinned down so much, it changed colour.

  2. It showed that matter changes characteristics when taken in very small volume or mass.

  3. It signified that just before a bubble bursts, the thickness of the bubble reduces drastically.

  4. It showed that the value of the superficial tension changes when the thickness of a layer of liquid becomes extremely small.

  5. It showed that when thickness falls below fifty millionths of a millimeter, superficial tension increases significantly.

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

(4) answers the question most logically in the context in which Newton's example has been adduced. (2) may be true in a general context only, not specific to Newton's example. (5) cannot be the answer because the passage doesn't state if the superficial tension increases or decreases.

Multiple choice
  1. the volume of the displaced water is greater than the volume, of the body

  2. a body immersed in fluid loses as much in weight as the weight of an equal volume of the fluid

  3. the mass of the displaced water is greater than the mass of the body

  4. none of these

Reveal answer Fill a bubble to check yourself
B Correct answer
Explanation

Archimedes' principle states that a body immersed in a fluid is buoyed up by a force equal to the weight of the fluid displaced by the body. This is the fundamental principle of flotation.

Multiple choice
  1. mass of the water displaced is less than that of iron

  2. mass of the water displaced is more than that of iron

  3. mass of the water displaced is equal to iron

  4. it displaces no water

  5. none of these

Reveal answer Fill a bubble to check yourself
A Correct answer
Explanation

According to Archimedes' principle, an object sinks if the weight of the water it displaces is less than the weight of the object itself. Iron is denser than water, so it displaces a mass of water less than its own mass.

Multiple choice
  1. viscosity

  2. atmospheric pressure

  3. small weight

  4. surface tension

  5. none of these

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

Surface tension is the property of a liquid that causes its surface to behave like a stretched elastic membrane, pulling the liquid into the shape with the smallest surface area for a given volume, which is a sphere.

Multiple choice
  1. Increases with depth

  2. Decreases with depth

  3. Remains same at all depth

  4. Sometimes increases sometimes decreases

Reveal answer Fill a bubble to check yourself
A Correct answer
Explanation

In liquids, the pressure increases with depth because then the total pressure is the atmospheric pressure plus the pressure due to the liquid present above.