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81
Which of the following is not a property of heavy water ?
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Answer & Solution
Answer: Option A
Solution:
Boiling point of heavy water is lower than that or ordinary water is not a property of heavy water.
82
Which of the following liquids is most viscous?
Discuss
Answer & Solution
Answer: Option A
Solution:
Here oil is the most viscous liquid.
83
Small bubbles are perfectly spherical because of
Discuss
Answer & Solution
Answer: Option D
Solution:
Surface tension is responsible for the shape of liquid droplets. Although easily deformed, droplets of water tend to be pulled into a spherical shape by the cohesive forces of the surface layer. In the absence of other forces, including gravity, drops of virtually all liquids would be perfectly spherical. The spherical shape minimizes the necessary “wall tension” of the surface layer according to Laplace’s law.
84
Pitot tube is used to measure
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Answer & Solution
Answer: Option C
Solution:
Pitot tube is used to measure stagnation pressure.
85
A spherical ball made of steel when dropped in mercury container
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Answer & Solution
Answer: Option B
Solution:
The density of steel usually ranges between 7.75 and 8.05 g/cm3 and the density of mercury is 13.534 g/cm3. Mercury is denser than steel this will mean that the buoyant force is large enough to float the steel ball. Different materials usually have different densities, so density is an important concept regarding buoyancy, purity and packaging. Osmium and iridium are the densest known elements at standard conditions for temperature and pressure but not the densest materials. Less dense fluids float on more dense fluids if they do not mix.
86
If cream is removed from milk, its density
Discuss
Answer & Solution
Answer: Option A
Solution:
The density of pure fresh milk being on the average 1.032, while the density of fat globules is about 0.86. It follows that the removal of cream will increase the density, while the addition of water will decrease it.
87
A falling drop of rain water acquires the spherical shape due to
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Answer & Solution
Answer: Option B
Solution:
Raindrops start out as round high in the atmosphere as water collects on dust and smoke particles in clouds. But as raindrops fall, they lose their rounded shape. A raindrop falling through the atmosphere forms as a roughly spherical structure due to the surface tension of water. This surface tension is the “skin” of a body of water that makes the molecules stick together. The cause is the weak hydrogen bonds that occur between water molecules. On smaller raindrops, the surface tension is stronger than in larger drops. The reason is the flow of air around the drop. Air flow on the bottom of the water drop is greater than the airflow at the top.
88
Why the needle of iron swims on water surface when it is kept gently ?
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Answer & Solution
Answer: Option C
Solution:
According to Archimedes principle and we can note that the amount of water displaced by a needle is lesser than the amount of water moved out by the needle (that is displacement of the needle). So the needle initially stays on the surface of the water and then sinks into the water. Surface tension is a contractive tendency of the surface of a liquid that allows it to resist an external force. It is revealed, for example, in the floating of some objects on the surface of water, even though they are denser than water, and in the ability of some insects (e.g. water striders) to run on the water surface. This property is caused by cohesion of similar molecules, and is responsible for many of the behaviors of liquids.
89
Rise of oil a wick is due to
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Answer & Solution
Answer: Option C
Solution:
The phenomenon of rise or fall of liquid in a capillary tube is called capillarity. Oil rises through a wick due to capillarity. The narrow pores in the threads of a wick act like tiny capillaries, through which oil rises. Capillary action is the result of adhesion and surface tension.
90
Bubbles of air rise up through liquids due to
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Answer & Solution
Answer: Option B
Solution:
Bubbles of air rise up through liquids due to viscosity and buoyancy.